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Laboratory for Mechanical Engineering & Electronics

Page 1

Sabrina Sopranzi

Ready for

PLANET ENGLISH Laboratory for Mechanical Engineering & Electronics

Contents 1 Technical Drawing CAD / CAM systems Mind Map

p. 402

2 Energy Conventional power plants Alternative power sources Mind Map

p. 405

3 Electricity What is electricity?

p. 408

4 Electric Circuits Series circuit Parallel circuit

p. 410

5 What is Electronics? Electronic circuits

p. 412

6 Telecommunication and Networks Means of transmission Network topologies

p. 414

7 Computer History The computer evolution

p. 418

8 Computer Technology Computer components USB flash drives Computer spare parts

p. 420

9 The Internet Networks Mind Map

p. 423

10 Automation and Robotics Automation Computer-aided technologies Sensors

p. 427

11 Eco Cars Electric and hybrid cars Fuel cell vehicles Mind Map

p. 431

12 Technical Assistance Auto maintenance

p. 436

13 Materials Metal processes

p. 440

14 Machine Tools Machines Safety on the workplace Mind Map

p. 444


1 Technical Drawing 1 Read the text about technical drawing and label the pictures. Technical drawing, also known as drafting, is the act and discipline of composing plans. The main purpose of technical drawing is to describe or explain all the characteristics of a product, giving all the necessary information that will help a manufacturer to produce that component. The visual image should be accurate in terms of dimensions and proportions, and should provide an overall impression of what an object is or does. It is a precise task requiring a high level of skill and suitable engineering tools. A drafter is the person who makes a drawing and who requires a wide knowledge of geometry, trigonometry and spatial comprehension, and in all cases must be precise and accurate and give great attention to detail. People who communicate with technical drawings use a visual language and technical standards that define practical symbols, perspectives and units of measurement. What are the tools and instruments used by a drafter in manual drafting? A T-square, a protractor, a compass, rulers, and triangles. Paper is also important and can be divided into layout paper, which is thin and fragile, and cartridge paper, which is heavier and more suitable for final drawings. Pencils used in drawing are graded from H to F depending on the hardness. The final drawing is made using a technical pen, graded according to the point, which must maintain the same line width. They are used with a range of stencils to add symbols, letters and patterns to the drawing. Rubbers remove pencils or pen writing when mistakes are found. Correction fluid is used to mask text errors.

1

2

6

5

2

402

4

3

CERT Read the text again and choose the correct answer. 1 Technical drawing is needed to... A make a scale of the product. B practise pens, rulers and stencils. C let the manufacturer understand the requirements.

4 Pencils are graded according to... A hardness. B hardness and colour. C hardness and point.

2 The drafter needs... A some paper and a pencil. B a wide range of technical instruments. C the final product.

5 A technical pen... A makes regular lines. B maintains the same line width. C draws lines of the same length.

3 Paper is chosen considering... A what sort of drawing the drafter is going to make. B the pencils he/she is going to use. C the drafter’s preference.

6 When mistakes are found... A we can’t correct them. B they’re removed with correction fluid. C stencil can cover them.


1 3

1

Listen and complete the text with the words in the box. creation  advantages  boards  drawings  software  defects  faster instructions    traditional    reduce    modification    electronically

CAD/CAM systems Drawing (1)  and manual drawing are not always precise and rapid: (2)  design is usually slow, especially in its revision and (3)  . For this reason manufacturing firms have replaced manual drawing with computer-aided design (CAD) to carry out functions related to design and production. This computer technology assists the designer in the (4)  , modification and analysis of a physical object. Nowadays computer (5)  can easily provide a three-dimensional drawing, which allows engineering designers to see how mechanical components may fit together without making models thus saving a lot of time. CAD is much (6)  and more accurate than manual drawing; designs can be quickly modified, reproduced and transmitted (7)  . Computer simulated analysis of the model helps experts find problems and (8)  without building prototypes, in this way saving a lot of money and time. When the design is ready, the CAD system can generate the detailed (9)  needed to start product manufacturing. When CAD systems are linked to manufacturing equipment controlled by computers, they form an integrated CAD/CAM system. Computer-aided manufacturing (CAM) offers significant (10)  over traditional approaches by controlling manufacturing equipment with computers instead of human labour. CAM converts the design of a component into computer language and it gives (11)  to the computer regarding machine operations. Thanks to CAD/CAM systems it is possible to eliminate operator errors and (12)  manufacturing costs.

4 Read the text again and match each sentence with its ending. 1 CAD helps designers 2 By using a CAD technology 3 Unlike manual drawing, CAD 4 CAD allows us to save 5 CAD designs can be 6 CAM is the use of computer software 7 The CAM system turns 8 CAD/CAM systems

a b c d e f g h

seen from any angle and are easily manipulated. to draw, modify and correct designs. the design into computer language. defects can be easily found. provides three-dimensional drawings. time and money. minimise errors and manufacturing costs. to control machine tools in the manufacturing process.

5

Complete the presentation of a technical drawing course a school is offering with the words form the box. Materials Technology    everyday life    practical work    house appliances    products    engineers

Design has a crucial role in the creation of the products that surround us in our (1) __________: furniture, buildings, cars, clothes, aeroplanes, computers, (2) __________. Knowledge of the design process is essential for successful engineering: designers and (3) __________ work together in order to transform beautiful ideas into useful (4) __________. Our course combine academic study with (5) __________, introducing you to the essential skills, knowledge and practice of design, and creating engineering drawings. Our technical drawing classes will teach you about: - Design and Manufacturing - (6) __________ - Technical Publications Come over and visit us on our Open Days! 403


1

Mind Map 6

Complete the mind map with the words form the box. 3D CAD    rapidograph    pens    isometric    thick    rendering software    drafting tables    perspective

TECHNICAL DRAWING TOOLS

LAYOUT CONVENTIONS Traditional

MULTIPLE VIEWS Parallel projection

Manual

pencils

lettering

1 __________

line styles

axonometric 7 _______

paper

6 _______

dimetric

squares

light

trimetric

French curves 2 __________

Sketching

protractor

Orthographic projection 8 _______

ruler 3 __________ CAD

CAD software 2D CAD 4 __________ Digital 5 __________

drawing tablet drawing stylus

404

Computer program


2

Energy Conventional power plants

1 Have you ever wondered where the electricity in your house comes from? Read the texts about the different types of power plants and match them with the pictures.

A

B

C

2 Read the texts again and decide if the following sentences are true (T) or false (F), then correct the false ones. 1 Nuclear power plants do not produce air pollution at all.

____

2 Accidents in nuclear power plants can have terrible consequences for the environment.

____

3 Nuclear power plants produce biodegradable waste material.

____

4 Thermoelectric power is generated by the combustion of renewable resources.

____

5 Thermoelectric power plants are environmentally friendly.

____

6 Dams are built on rivers to store water.

____

7 The water released from the reservoir flows through the generator.

____

8 The only disadvantage of hydropower is its high initial cost.

____

405


2 Alternative power sources

3

Read the texts about alternative power sources and complete the table with the missing information. Environmental problems such as the greenhouse effect and air pollution have led scientists to find alternative power sources which are renewable and less polluting. SOLAR ENERGY Sunlight can be directly converted into electricity by solar cells made of silicon. When light strikes the cells, a part of it is absorbed by the semiconductor material. The energy of the absorbed light knocks electrons loose, allowing them to flow freely and produce electricity. The process of converting light (photons) into electricity (voltage) is known as the photo-voltaic process (PV). Solar cells are usually combined into panels and grouped into arrays. Even if the initial costs can be high, the PV system provides an independent, reliable electrical power source. It can produce energy for more than 15 years and its routine maintenance is simple and cheap. WIND ENERGY Wind energy is one of the cheapest renewable technologies available today. The wind turns the blades of giant turbines, producing in this way kinetic energy which is then converted into mechanical power and electricity by a generator. The main disadvantage of wind energy is that there are few suitable wind sites where it is possible to have a constant production of electricity. TIDAL ENERGY This alternative power source, which is typically used in coastal areas, turns the potential energy of tides into electricity. Tidal power generators use rising and falling tides in much the same manner as hydroelectric

Type of energy

How it works

power plants. Large underwater turbines are placed in areas with high tidal movements and are designed to capture the kinetic energy of rising and falling tides. The turbines are driven by the power of the sea both when the tide comes in and when it goes out. The problem with tidal power is that only massive increases in tides can produce energy and there are very few places where this occurs. Moreover, the aquatic ecosystem and the shoreline can be damaged by the changes in the tidal flow. GEOTHERMAL ENERGY In the past, people used hot springs for bathing, cooking and heating. Geothermal energy is based on the fact that the Earth is hotter below the surface. The hot water which is stored in the Earth can be brought to the surface and used to drive turbines to produce electricity or it can be piped through houses as heat. This energy is cheap and has a low impact on the environment, but there are few sites where it can be extracted at low cost. BIOMASS ENERGY Biomass is a renewable energy source deriving from plant material and animal waste. When it is burnt, it releases its chemical energy as heat. Biomass fuels include forest residues (such as dead trees, branches and tree stumps), straw, manure and even municipal solid waste. Biomass energy is a natural process, it is carbon neutral and has low initial costs. It used to be the main source of heating at home in the past and it continues to be highly exploited in the developing world. The main disadvantage of biomass is that it has a smaller potential than other energy sources and requires excellent maintenance skills.

Advantages

Disadvantages high initial costs

Wind energy It is a natural process because it exploits the potential energy of tides.

406


2

Mind Map 4 Complete the mind map with the words form the box. tidal    photovoltaic cells    wood    nuclear fission    biomass    gas

ENERGY SOURCES

NON-RENEWABLE

RENEWABLE coal solid

1 __________

solar panels Solar energy 4 __________

peat

Geothermal energy Fossil fuels

liquid

crude oil

hydroelectric Water energy 2 ____

5 __________

natural gases

Wind energy

wind turbines

nuclear fusion biogas Non-fossil fuels

nuclear energy

Biofuels 3 __________

6 __________

407


3 Electricity What is electricity?

1 Read the text and label the picture with the name of each

1

part.

2

All substances, solids, liquids or gases, are composed of one or more of the chemical elements. Each element is composed of identical atoms. Each atom is composed of a small central nucleus consisting of protons and neutrons around which orbit shells of electrons. These electrons are very much smaller than protons and neutrons. The electrons in the outermost shell are called valence 3 electrons and the electrical properties of the substance depend on the number of these electrons. Neutrons have no electric charge, but protons have a positive charge while electrons have a negative charge. In some substances, usually metals, the valence electrons are free to move from one atom to another and this is what constitutes an electric current.

Read the text again and complete the sentences with the missing information. 1 Elements make up ____________________________________________________ 2 Identical atoms _______________________________________________________ 3 Atoms consist of _____________, _____________and _______________________ 4 Inside there are __________ and __________, while outside _________________ 5 Shells________________________________________________________________ 6 Valence electrons ______________________________________________________ 7 Neutrons do not have __________________________________________________ 8 Electricity is generated when ____________________________________________

Electricity consists of a (1)  of free electrons along a conductor. To produce this current flow, a generator is placed at the end of the conductor in order to move the (2)  . Conductors Electricity needs a material which allows a current to pass through easily, which offers little (3)  to the flow and is full of free electrons. This material is called a conductor and can be in the form of a bar, tube or sheet. The most commonly used (4)  are wires, available in many sizes and thicknesses. They are coated with insulating materials such as plastic. Semiconductors Semiconductors such as silicon and germanium are used in transistors and their conductivity is halfway in between a conductor and an (5)  . Small quantities of other substances, called impurities, are introduced in the material to (6)  the conductivity. Insulators A material which contains very (7)  electrons is called an insulator. Glass, rubber, dry wood and (8)  resist the flow of electric charge, and as such they are good insulating materials.

408

Conductors

CERT Listen and complete the text with the missing information.

Copper Aluminium Iron Mercury Carbon Water

Semiconductors

2

Increasing Conducting Ability

3

Silver

Germanium Silicon

Dry air Insulators

2

Wood Glass Rubber


3 4 Read the text again and decide if the following statements are true (T) or false (F), then correct the false ones. 1 A flow of electrons moving inside a conductor creates an electric current. 2 A generator is used to move the charges. 3 Electrons can easily pass through any material. 4 Any material is a good conductor. 5 Conductors are coated with insulators. 6 The presence of free electrons affects the conductivity of materials. 7 Impurities are introduced to increase conductivity. 8 Insulating materials resist the flow of electrons.

5

____ ____ ____ ____ ____ ____ ____ ____

Read the text and complete the table with the missing information.

There are two types of current: Direct current (DC) and Alternating current (AC). Direct current is a continuous flow of electrons in one direction and it never changes its direction until the power is stopped or switched off. Alternating current constantly changes its direction because of the way it is generated. The term ‘frequency’ is used to indicate how many times the current changes its direction in one second. Alternating current has a great advantage over direct current because it can be transmitted over very long distances through small wires, by making energy high voltage and low current. There are several quantities that are important when we are talking about electric current. Volts (V) – so named after the Italian physicist Alessandro Volta – measure the difference of electric potential between two points on a conducting wire. Amperes (A) measure the amount of current flowing through a conductor, that is to say the number of electrons passing a point in a conductor in one second. Coulomb (C) measure the quantity of charge transferred in one second by a steady current of one ampere. Power is the rate at which work is performed and it is measured in watts (W). A Kilowatt (kW), which is equal to one thousand watts, is used to measure the amount of used or available energy. The amount of electrical energy consumed in one hour at the constant rate of one kilowatt is called kilowatt-hour. Unit of measurement

What does it measure?

(1) ____________________

the number of electrons passing a given point in a conductor in one second

(2) ____________________

the quantity of electricity transferred by a steady current of one ampere

(3) ____________________

the amount of electric energy used

(4) ____________________

the difference of potential between two points on a conductor

(5) ____________________

rate at which work is done

Vocabulary 6 Translate the keywords from the unit in your own language. charge \tSA…dZ\__________________________________ coated \"k´UtId\_________________________________ conductor \k´n"døkt´“r‘\__________________________ current flow \"kørnt fl´U\__________________________ impurity \Im"pjU´rIti\_____________________________ insulator \"InsjUleIt´“r‘\___________________________

property \"prÅp´ti\_______________________________ semiconductor \semik´n"døkt´“r‘\__________________ shell \Sel\______________________________________ to switch off \t´ swItS Åf\__________________________ thickness \"TIkn´s\_______________________________ valence \"vœl´ns\________________________________

409


4 Electric Circuits 1

Read the text and label the picture with the name of each part.

An electric circuit or network is a pathway through which the electric current can flow. A simple circuit consists of a power source, two conducting wires, each one attached to a terminal of the source and a device through which electricity can flow. This device is called a load and it’s attached to the wires. If all the parts are properly connected, the current flows and the lamp lights up. This kind of circuit is called ‘closed’.

1

3

2

On the contrary, if the wires are disconnected the circuit is called ‘open’ or ‘broken’. The circuit can be opened and closed by a device called a switch. Loads can turn electrical energy into a more useful form. Some examples are: light bulbs, which change electrical energy

into light energy;

4 5

electric motors, which change electrical

energy into mechanical energy;

speakers, which change energy into sound.

The source provides the electrical energy used by the load. It can be a storage battery or a generator. The switch interrupts the current delivered to the load by the source and allows us to control the flow.

When an abnormally high amount of current passes through a network, you get a short circuit. This may occur when there is a drop in the resistance or a broken insulation. In order to prevent short circuits, it is best to use fuses, which melt when too much current flows through them, interrupting in this way the circuit.

Vocabulary 2 Match the words with their definitions. 1 2 3 4 5 6

3

a b c d e f

a a a a a a

device which interrupts the circuit circuit in which wires are disconnected device which provides power complete circuit with no breaks at all device which consumes electric power protective device

CERT Read the text again and answer the following questions. 1 2 3 4 5 6 7 8

410

load switch source fuse closed circuit broken circuit

What does a simple circuit consist of? What happens to the lamp in a closed circuit? Can you name some examples of loads? What is a generator? What is the function of a switch? When does a short circuit occur? What can we use to prevent short circuits? How does a fuse work?


4

Lab Corner Series and parallel circuits

4

3

Complete the texts with the words in the box. Then listen and check.

R1

components    current    turn on    branch    amount positive    appliances    continue    burns out    path

+

The (1) components of a circuit can be wired in two different ways: R2 series or parallel. If components are arranged one after another to form a single (2)  between the terminals and the components, the circuit is known as a series circuit. In this type of circuit, the (3)  flows from the negative terminal to R3 the (4)  terminal, passing through all the other components of the circuit. This means that the (5)  of energy passing through all the components in the series is the same. The main disadvantage of a series circuit is that when a single component in the path (6)  , the entire circuit stops operating (e.g. Christmas tree lights).

+ R1

R2

-

For example, you don’t have to (10)

5

A parallel circuit consists of several paths connecting the different components. Each separate path is called a (7)  of the circuit. Current from the source divides and flows through the different branches. R3 Unlike series circuits, if one of the components in the parallel circuit burns out, the other paths (8)  to operate. Parallel circuits are commonly used to connect (9)  at home, so that each socket can function independently. the light in your room for the TV socket to work.

Read the text and find synonyms for the words below. A fuse can be added to an electric circuit to protect it from the effects of undue power. This safety device, which is made of a heat-sensitive alloy, is connected in series with the circuit it has to protect. If an excessive amount of current flows through the circuit, the alloy will liquefy and open the circuit. A circuit breaker is fundamental in a house to protect circuits against overloading, overheating and short circuits. The advantage of a circuit breaker is that it can be reset after the overloading by replacing the fuse. A professional electrician should always provide his customers with a map of the electric circuit in the house so that it will be easier to work on it in case of faults. 1 excessive: ________________ 2 reacting to high temperatures: ________________ 3 to melt: ________________

4 loading up: ________________ 5 adjusted: ________________ 6 clients: ________________

Vocabulary 6 Translate the keywords from the unit in your own language. to burn out \t´ b‰…n aUt\___________________________ device \dI"vaIs\__________________________________ fault \fÅlt\_____________________________________ fuse \fju…z\_____________________________________ light bulb \laIt bølb\_____________________________ load \l´Ud\_____________________________________ to melt \t´ melt\_________________________________ parallel circuit \"pœr´lel "s‰…kIt\_____________________

power source \"paU´“r‘ sO…s\_______________________ series circuit \"sI´ri…z "s‰…kIt\________________________ short circuit \SO…t "s‰…kIt___________________________ socket \"sÅkIt\___________________________________ speaker \"spi…k´“r‘\_______________________________ switch \swItS\__________________________________ to turn into \t´ t‰…n "Intu…\__________________________ undue \øn"dju…\__________________________________

411


5 What is Electronics? 1 Read the text about the main inventions in electronics and complete the table with the missing information.

Invention

Year

Function read and understand electronic signals

Radar 1920s

Writing 2 Think of an electronic device (TV, radio, mobile phone, computer, etc.) you use every day. Write about its use, advantages, disadvantages and your opinion of it. Write about 60 words.

412


5 Electronic circuits

3

CERT Read the text about the different kinds of electronic circuits and answer the questions. A conventional electronic circuit is made of separate components attached to a base called a printed circuit board (PCB). Before being finalised and manufactured, the electronic circuit must be tested many times on an experimentation board called a breadboard. It consists of a perforated block of plastic with several spring clips connected by copper wires. It doesn’t require soldering as its components can be pushed straight into the holes, so it is easy to change connections and replace pieces. It is generally used to create temporary prototypes and experiment with circuit design. The integrated circuit, also known as a chip, is one of the most important inventions of the 20th century. Integrated circuits are used in almost all electronic equipment today, for example watches, calculators and microprocessors. It consists of millions of transistors and other electronic components combined to form a complex set on a thin slice of silicon or other semiconductor material. Chips are becoming tinier and tinier and they are produced in large quantities so that costs are reduced. Since signals have to travel a short distance, they work faster, consume less power and generate less heat. They are also more reliable given the limited amount of connections which could fail. The microprocessor is the heart of any normal computer: it is a logic integrated circuit chip which can carry out a sequence of operations when it receives instructions from different input devices. As it doesn’t contain a large memory, it can’t work alone but needs to be supported by other integrated circuits to be connected with peripherals. Most microprocessors are found inside computers and are called the CPU (Central Processing Unit). In order to work properly, the microprocessor needs to receive instructions from a memory chip. These instructions are then decoded, executed and elaborated so as to get the results available. The most sophisticated microprocessors can contain up to 10 million transistors and run 300 million cycles per second. It means that the computer can perform about a billion instructions every second. As technology continues to evolve, microprocessors are becoming tinier and tinier. 1 What 2 What 3 What 4 What 5 What

is a conventional circuit made of? does PCB stand for? is a breadboard? does a chip consist of? is a chip made out of?

6 What are the advantages of chips compared to conventional electronic circuits? 7 What is a microprocessor? 8 How many instructions can computers perform?

Vocabulary 4 Read the text again and match the words with their definitions. 1 prototype 2 perforated 3 soldering 4 to fail 5 peripheral 6 to decode

a b c d e f

to convert an electrical signal into another code the act of joining metallic parts an original model used to test a circuit or a product to perform ineffectively having a series of holes an auxiliary device that works with a computer

413


6 Telecommunication and Networks

Communication has always played a crucial role in human societies and over time its forms have evolved through the progression of technology, transforming itself into telecommunication. The telegraph, the telephone, the radio, the television, the radar, the fax and, more recently, the computer are all devices which were invented to communicate using electromagnetic waves. Thanks to them, we can transmit texts, pictures, sounds and images and reach everyone in any part of the world.

1 Pairwork Look at the following means of communication and take turns asking and answering the following questions. How often do you use them? What do you use them for? Who do you use them with? What are their advantages? Can you think of any risk connected with their use?

2

Look at the diagram and complete the text about telecommunication systems.

Means of transmission cables

wires

coaxial cables

radio waves

optical fibres

antennas

satellites

Telecommunication systems need means for the (1)  of any information, which is translated into electromagnetic waves that connect the transmitter to the receiver. These means can be physical media, such as (2)  , or radio (3)  , which are transmitted by air. Different kind of cables can be used. The simplest communication cables consist of a single pair of (4)  twisted together. Other types are (5)  cables and optical (6)  . Radio waves need (7)  to be transmitted and sometimes (8)  are necessary for long-distance transmission.

414


6 3

Read the text about the different kinds of transmission media and complete the table.

Ground transmission Wires provide a cheap and effective means of communication that was predominant in the past. Wires, which are made out of copper and insulated with plastic, can be single or twisted, and they are used mainly in telephone and computer networks. Coaxial cables consist of an inner conductor insulated with plastic and surrounded by a woven copper shield. They are used in television and radio as these cables can support about 60 channels. The inner copper cable is insulated to protect the wires from bending and crushing and to reduce the noises. Optical fibres are used in place of simple copper wires to carry larger amounts of information. They consist of strands of pure glass as thin as a human hair. Signals travel along fibres with less loss and without any electromagnetic interference. As they permit transmission over longer distances and at a higher speed, they are used in communication systems, in some medical instruments and in a wide variety of sensing devices.

Air transmission Antennas were invented to capture radio signals and convert them into electrical signals through the receiver. They can also receive electrical signals from the transmitter and convert them into radio signals. These electric devices, which provide information at a cheap rate, are essential to all equipment that uses radio. They are used in systems such as radio and television broadcasting, radar, mobile phones, and satellite communications, for which they are in form of dishes. Satellites are machines launched into space to move around Earth or another celestial body. A communications satellite is basically a station which receives signals in a given frequency and then retransmits them at a different frequency to avoid interference problems. The first satellite was launched by the Soviet Union in 1957. There are different types of satellites: low-orbit satellites, which travel at about 300 km from the Earth and observe the planet, providing accurate information about agriculture, pollution and weather forecasting; medium-altitude satellites, which travel at about 9000-18000 km from the Earth and are used in telecommunications. Means of transmission

Material

Function

Type of signal (ground or air)

Advantages

wires coaxial cables optical fibres antennas satellites

415


6 Network topologies A network topology is the layout of the interconnections of the nodes of a computer network. It depends on the distance involved, the type of hardware used and the stability needed.

4

Read the texts about the different network topologies and fill in the gaps with the words in the box. Then listen and check. 4

nodes    circle    network    pathway    affect    configure small    destination    star    failure    exchanging    backbone

Bus network

Star network

5 Read the texts again and decide if the following statements are true (T) or false (F), then correct the false ones. 1 The topology chosen depends only on the location of computers. 2 All topologies use many cables and are very expensive. 3 In a bus topology all the buses are connected one after the other. 4 In a bus topology a server controls the flow of data. 5 In a star network data is always updated. 6 The hub doesn’t connect printers and other devices in a star topology. 7 In the ring topology each node is connected to the hub. 8 In the ring topology if the hub doesn’t work, the network goes down. 9 Star bus topology combines elements of bus and ring topologies. 10 In a star bus topology a backbone line failure affects the whole network.

416

_____ _____ _____ _____ _____ _____ _____ _____ _____ _____


6 6

Read the texts again and complete the table with the missing information. Topology

Connection

Use

Advantages

Disadvantages

small networks Each node is connected to the central hub. ring

Ring network

Star bus topology

Vocabulary 7 Translate the keywords from the unit in your own language. backbone \"bœkb´Un\____________________________ bending \bendIN\________________________________ coaxial \k´U"œksI´l\______________________________ dish \dIS\______________________________________ forecasting \"fO…kA…stIN\____________________________ to go down \t´ g´U daUn\ _________________________ to grant \t´ grA…nt\_______________________________ hub \høb\______________________________________ inner \"In´“r‘\___________________________________ to link \t´ INk\__________________________________

receiver \rI"si…v´“r‘\_______________________________ sensing device \"sensIN dI"vaIs\_____________________ to share \t´ Se´“r‘\_______________________________ shield \Si…ld\____________________________________ strand \strœnd\_________________________________ to surround \t´ s´"raUnd\__________________________ token \"t´Ukn\___________________________________ transmitter \trœnz"mIt´“r‘\_________________________ to twist \t´ twIst\________________________________ woven \"w´Uvn\_________________________________ 417


7 Computer History The computer evolution The word computer was first used in 1613 to describe a person who performed calculations, but now the term almost universally refers to automated electronic machinery. Its history started more than 2000 years ago in Babylonia (Mesopotamia), when the abacus, a wooden rack holding two horizontal wires with beads strung on them, came into use. First computers were used primarily for numerical calculations. In the XVI century Leonardo da Vinci drew sketches for a machine that were sufficiently complete and correct for modern engineers to build a calculator on their basis. A century later, in 1623, the first calculator was built by German astronomer and mathematician Wilhelm Schickard, but we have to wait for French mathematicianphilosopher Blaise Pascal to see the production of a machine in 1644. It was called Pascaline, or Arithmetic Machine, and it was invented for Pascal’s father to help him with his tax collection job. It could only perform additions and subtractions. In 1822, Charles Babbage began developing the Difference Engine, considered the first mechanical computer or automatic computing engine. Later, in 1837, he proposed the first general mechanical computer, the Analytical Engine. The machine was designed to consist of four components: the engine, the store, the reader, and the printer. These elements are the essential components of every computer today. In 1946, nearly a century later, the ENIAC (Electronic Numerical Integrator Analyzer and Computer) was built by the United States. It was the first electronic digital computer which was fully functional. It occupied about 1,800 square feet, the size of a large room, and weighed almost 50 tons. This first generation of computers used vacuum tubes, about 18,000 were used for the ENIAC. They could only perform single tasks, and they had no operating system. The second generation of machines started in the 1950s. They used transistors which were more reliable than vacuum tubes. In 1950, the UNIVAC 1101 was the first computer capable of storing and running a program from memory. During this generation of computers over 100 computer programming languages were developed. In 1953 IBM publicly introduced the 701, its first electric and mass-produced computer. The invention of the integrated circuit brought us the third generation of computers.

418


7 Computers became smaller, more powerful and more reliable, able to run many different programs at the same time. In1980 Microsoft Disk Operating System (MS-Dos) was launched and in 1981 IBM introduced the personal computer (PC) for home and office use. Three years later Apple created the Macintosh computer with its icon driven interface and the 90s gave us Windows operating system. In 2010 the first iPad, a tablet computer, was unveiled. As a result of the various improvements to the development of the computer we have seen the computer being used in all areas of life. It is a very useful tool that will continue to experience new development as time passes.

1 Read the text and complete the table with the missing information. When

What

Who

400 BC

___________________________________

___________________________________

XVI Century

___________________________________

___________________________________

1613

___________________________________

___________________________________

1623

___________________________________

___________________________________

1644

___________________________________

___________________________________

1837

___________________________________

___________________________________

1946

___________________________________

___________________________________

1953

___________________________________

___________________________________

1981

___________________________________

___________________________________

2010

___________________________________

___________________________________

Speaking 2 Pairwork Look at the table in exercise 2. Ask and answer questions about the computer evolution.

A When was ENIAC built? B It was built in 1946.

3 Read the text about Steve Jobs and complete it with the words from the box. Apple  iPad  technological  battle  evolution  products  Macintosh  Computers

Steve Jobs was born in 1955 in San Francisco, California. At school he showed great (1) _________________ interests. Jobs experimented with different scientific attempts before starting Apple (2)_________________ with Steve Wozniak in 1976. Together they created the (3)_________________ I and Apple II computers. In 1984, the (4)_________________ computer was launched. Apple’s revolutionary (5)_________________, which include the iPod, iPhone and (6)_________________, are now seen as dictating the (7)_________________of modern technology. He died in 2011, after a long (8) _________________ with cancer.

419


8 Computer Technology 1 How much do you know about computers? Work in pairs and answer the questions. 1 What is a computer? 2 What does a computer do? 3 What are the main components of a computer? 4 Have you got a computer at home? What type is it? 5 What do you generally use your computer for?

Computer components

2

Read the text about computer components and complete the table. A computer is an electronic device that performs high-speed mathematical or logical operations and executes instructions in a program. Its main functions are to accept and process data to produce results, store information and programs and show results. The main characteristics of these powerful machines are: speed, as they can execute billions of operations per second high reliability in the elaboration and delivery of data storage of huge amounts of information A computer consists of hardware and software. The word hardware refers to all the components you can physically see such as the CPU (Central Processing Unit), the internal memory system, the mass storage system, the peripherals (input and output devices) and the connecting system. Software, instead, comprises all the computer programs and related data that provide the instructions for a computer to work properly. The CPU is the brains of your computer and consists of ALU (Arithmetic Logic Unit), which carries out the instructions of a program to perform arithmetical and logical operations, and CU (Control Unit), which controls the system and coordinates all the operations. In order to memorise input and output data, there is an internal memory that can be distinguished into volatile and non-volatile. Volatile memory is memory that loses its contents when the computer or hardware device is off. Computer RAM (Random Access Memory) is a good example of volatile memory. It is the main memory of the computer where all data can be stored as long as the machine is on. On the contrary, a non-volatile memory contains information, data and programs that cannot be modified, or can be modified only very slowly and with difficulty. Computer ROM (Read Only Memory), for example, contains essential and permanent information and software which allow the computer to work properly. Memory storage devices are available in different options, sizes and capacities. These devices are extremely useful; they can be rewritten and offer incredible storage capacity, up to 256 GB. They can be magnetic (hard disks), optical (CDs and DVDs) or solid (flash memory cards). Component (acronym) hardware software CPU ALU CU RAM ROM

420

Full name / Description

Functions and properties


8 Mass storage devices are available in an incredible number of options with different storage capacity up to 256 GB for some portable drives. A very popular type of removable device is represented by USB flash drives, which are much smaller and lighter than other portable drives, but which can still provide a huge storage capacity.

Usb flash drives

3

Read the text about USB flash drives and fill in the gaps with the words in the box. Then listen and check. 5

plugged    backup    board    moving    disadvantage operating system    case    off-site    water    pocket

A USB flash drive is a flash memory data storage device integrated with a USB (Universal Serial Bus) interface. USB flash drives are removable and rewritable, and they’re small enough to be carried in a (1)  . These portable drives are faster, have thousands of times more capacity, and are more durable and reliable than CD-ROMs because of their lack of (2)  parts. Unlike most removable drives, a USB drive does not require rebooting after it’s attached, they are very robust and use very little power. They just need to be (3)  into a USB port to work and they’re compatible with any modern (4)  , such as Linux, Mac OS X and Windows. A flash drive consists of a small printed circuit (5)  carrying the circuit elements and a USB connector, insulated electrically and protected inside a plastic (6)  . The drive is often used as a (7)  medium to save data, because it is very user-friendly and it can be carried (8)  for safety despite being large enough for several backups. Moreover, flash drives are cheaper and less fragile than many other backup systems. Its only (9)  is that it can be easily lost because of its size and it’s easy for people without a right to data to take illicit backups. Some specially manufactured flash drives are provided with a metal or rubber case designed to be waterproof and almost unbreakable. It’s been tested that these flash drives can retain their memory even after being submerged in (10)  , put in a washing machine and run over with a car.

Vocabulary 4 Find the synonyms for the following words in the text. 1 long-lasting: ____________________ 2 sturdy: ____________________ 3 inserted: ____________________

4 easy to use: ____________________ 5 fabricated: ____________________ 6 hold: ____________________

5 Read the text again and decide if the following statements are true (T) or false (F), then correct the false ones. 1 Flash drives are provided with a very limited storage capacity. 2 They are lighter that other removable drives. 3 They need an external power supply to work. 4 USB flash drives are compatible with few operating systems. 5 A plastic case prevents the printed circuit board from being damaged. 6 USB drives are convenient for transferring data between computers or for personal backups. 7 They are more expensive than other backup systems. 8 Some models continue to work even after being accidentally dropped into water.

_____ _____ _____ _____ _____ _____ _____ _____ 421


8

Lab Corner Computer spare parts

6

Read the text and complete the definitions with the words in the box. mouse    speaker    modem    keyboard    printer    disk drives    monitor    scanner

2 3

1

1

3 4

4 5

7 6

6 7 5 2

8 8

We call hardware the equipment involved in the functioning of a computer. It consists of several components that can either send data to the computer (input devices) or convert and transfer data out of the computer in the form of text, sound, image, or other media (output devices). The main input and output devices are: (1)  : this is the display, which helps you control computer operations. It accepts video signals from a computer and shows information on a screen. The first models used cathode ray tubes (CRTs), which was the dominant technology until they were replaced by liquid crystal displays (LCDs) in the 21st Century. (2)  : this is like a typewriter with an arrangement of keys corresponding to written symbols. It is generally used to type text and numbers in a word processor. However there are some special keys or combination of keys which, pressed simultaneously, can produce actions or computer commands. (3)  : this is a dynamic pointing device used to move the cursor on the screen. It consists of a plastic case, a little ball that sends impulses to the computer when rolled on a flat surface, one or more buttons, and a cable that connects the device to the computer. Modern computers are provided with built-in pointing devices that let you control the cursor by simply moving your finger over a pad. (4)  : this captures images from printed pages or photos and converts them into digital data. They usually come with software that lets you resize or modify a captured image. (5)  : this receives text and graphics from a computer and transfers the information to paper. It may vary in size, speed, sophistication, and cost. In general, more expensive models are used for higher-resolution colour printing. (6)  : this converts electrical signals into sounds and allows you to listen to music, multimedia web sites and conversations with other people. (7)  : this is a device or program that enables a computer to transmit data over telephone lines, by converting digital signals into analog waves. It can be either internal or external to your computer. (8)  : these are devices that allow you to read and write data on disks. They can be either mounted inside the computer and store the computer operating system and all the documents and programs, or come in the form of removable devices.

Speaking 7 Pairwork Look at the picture in exercise 6 and decide if the components are input (I) or output (O) devices. 422


9

The Internet 1

Read the text and complete the sentences with the missing information.

The Internet is a worldwide information system consisting of countless networks and computers, which allow millions of people to share information and data. Thanks to the Internet it is now possible for people all over the world to communicate with one another in a fast and cheap way. The Internet was first invented in the 1960s in the USA by the Department of Defence as an internal project to link computers. The Department wanted an extremely safe way of sending messages in case of nuclear attack. It was a British physicist, Sir Timothy Berners-Lee, who used it to make information available to everyone and created the most important media of the 21st century. In 1980 while working at CERN in Geneva – the largest particle physics laboratory in the world – he first thought of using hypertext to share and update information among researchers. Then in 1989-90 he produced a plan to link hypertext to the Internet to create the World Wide Web. He designed and built the first site browser and editor, as well as the first web server called httpd (Hypertext Trasfer Protocol Deamon). Hypertext are the words or chains of words in a text we can click on to be linked to new sites whose content is related to the words. But how does this global system work? It is a network of people and information linked together by telephone lines which are connected to computers. The applications are based on a client/server relationship, in which your computer is the client and a remote computer is the server. All you need to join this system is a computer, a normal telephone line, a modem and an account with an Internet Service Provider (ISP), a company that provides access to the Internet. A user buys a subscription to a service provider, which gives him/her an identifying username, a password and an email address. With a computer and a modem, the user can connect to the service provider’s computer which gives access to many services, such as WWW (world wide web), emails and FTP (file transfer protocol). 1 The Internet allows people to ____________________________________________________________________ 2 In the 1960s, the Internet was used ______________________________________________________________ 3 Thanks to Sir Timothy Berners-Lee ________________________________________________________________ 4 He created the World Wide Web by linking _________________________________________________________ 5 All you need to access the Internet is ______________________________________________________________ 6 The ISP is _____________________________________________________________________________________

Writing 2 Write a summary of the text in exercise 10 following the flow chart. Write about the role of the Internet in the modern world.

Describe the origins of the Internet and its first uses.

Explain the revolution that occurred in the 1990s.

Say how the Internet system works.

Write about the importance of the Internet in your own life and describe how you use it.

423


9 Networks

3

Read the text about networks and answer the questions.

A network is a group of computers linked together. It consists of at least two computers joined by cables on the same desk or same office, but it can also mean thousands of computers across the world. The users of a network can share hardware (scanner, printer, fax machine, etc.), access data in other people’s computers and run other programs stored in the network although not installed on their own computer. A network consists of: nodes, that is to say different computers and devices; a connecting medium, such as cables or a wireless connection; routers, which are special computers enabled to send messages; switches, that is to say devices which help to select a specific path to follow. Networks can be connected in different ways according to the area they cover. A LAN (Local Area Network) is generally located in a limited space, such as a building or a campus. On the contrary, a WAN (Wide Area Network) operates in a larger area and it can reach most of the world, so it could be described as a collection of LANs all over the world.

The exchange of information in a network is controlled by communications protocols, which define the formats and rules that computers must follow when talking to one another. Well-known communications protocols are Ethernet, which is a family of protocols used in LANs, and the Internet Protocol Suite, which is used in any computer network. Computer networks offer many advantages. For example, they facilitate communication, allowing people to send emails and texts, make phone/video calls and videoconference. Furthermore, networks allow people to share files, data, and other types of information as users may access data and information stored on other computers in the network. On the other hand, networks may be difficult to set up and may be insecure as computer hackers can send viruses or computer worms to the net computer. They may also interfere with other technologies, as power line communication strongly disturbs certain forms of radio communication and access technology such as ADSL.

1 What does a network consist of?

5 What is the function of communications protocols?

2 What is a router?

6 What is Ethernet used for?

3 What is a LAN?

7 What are the advantages of using a network?

4 What is a WAN?

8 What are the disadvantages of using a network?

Writing 4 Refer back to the text and write a summary of the components, pros and cons of networks and describe a situation in which a network can be very useful. 424


9 5 Read the text about the different types of Internet connections and match the words in the box with the correct definition. DSL    wireless    satellite    cable    dial-up

1 ________________________________ It used to be the most common way to access the Internet. This type of connection requires you to use a landline telephone connection and a modem connected to your computer. In order to establish the connection, you must dial a telephone number provided by the ISP. Nowadays it represents the cheapest but slowest way to connect to the Internet. Another disadvantage of this type of connection is that you cannot make or receive phone calls while connected to the Internet. 2 ________________________________ A digital subscriber line is another way to connect to the Internet through a telephone connection, but the quality and speed of the connection is significantly greater than a dial-up connection. Moreover, unlike a dialup connection, this connection is always on, which means you can still make and receive telephone calls with your landline telephone. 3 ________________________________ In order to have this type of connection you must subscribe to an account with a local cable television provider and connect a cable modem to your computer. This connection is very fast and doesn’t interfere with your telephone line. 4 ________________________________ This is one of the newest Internet connection types. This connection does not require your computer to be connected to telephone or cable wires, as it uses radio frequency bands. You simply need a modem and an account with an Internet provider. Nowadays, many coffee shops, restaurants, public libraries and schools offer this type of connection for free. However, it is typically more expensive and mainly available in metropolitan areas. 5 ________________________________ This type of connection allows a user to access the Internet via a satellite that orbits the earth. Because of the enormous distances signals must travel, this connection is slightly slower than terrestrial connections through cables. It represents an excellent option for people living in rural areas where other types of connections are not available.

Vocabulary 6 Translate the keywords from the unit in your own language. to interfere \tu… Int´"fI´“r‘\_________________________ key \ki…\_______________________________________ keyboard \"ki… bO…d\______________________________ landline \"lœndlaIn\______________________________ laptop \"lœptÅp\_________________________________ to link \t´ lINk\__________________________________ mainframe \"meInfreIm\__________________________ palmtop \"pA…mtop\______________________________

to perform \t´ p´"fO…m\____________________________ printer \"prInt´“r‘\________________________________ to process \t´ "pr´Uses\____________________________ rebooting \ri…"bu…tIN\______________________________ to recharge \t´ ri…"tSA…dZ\__________________________ to retain \t´ rI"teIn\_______________________________ storage \"stO…rIdZ\________________________________ tower \"taU´“r‘\__________________________________

425


9

Mind Map 7

Complete the mind map with the words form the box. keyboard    display    motherboard    ROM    Wifi    audio outputs optical scanner    HTTP(S)    WAN    CAD

THE COMPUTER WORLD HARDWARE

RAM

Memory

1 __________

SOFTWARE

NETWORKS Operating system

LAN

hard drive 7 _________ Internet Bus 6 _________

2 __________ protocols

printer Output devices storage devices

CAM

email WWW

3 __________

8 _______

mouse 4 ______________ Input devices

Rendering software connections

joystick 5 ______________

bluetooth

graphic tablet/stylus

9 _______

control unit (CU) Central Processing Unit (CPU)

arithmetic logic unit (ALU) 10 ____________________

426


Automation and Robotics 10 Automation

1 Read the text about automation and match the words with their definition.

Mechanisation refers to the process of providing human beings with machinery capable of assisting them with the muscular requirements of work. A further development of mechanisation is represented by automation, which implies the use of control systems and information technologies to reduce the need for both physical and mental work to produce goods. Automation has had a great impact on industries over the last century, changing the world economy from industrial jobs to service jobs. In manufacturing, where the process began, automation has meant that the desired results can be obtained through a series of instructions made automatically by the system, which define the actions to be done. Automated manufacturing grants higher consistency and quality, while reducing lead times and handling. It also improves work flow and increases the morale of workers when a good implementation of the automation is made. However, the purpose of automation cannot be seen only in terms of a reduction of cost and time; there are several more aspects to be taken into consideration. For example, while it is true that automation offers a higher precision in the manufacturing process, it is also true that it requires skilled workers who can make repairs and manage the machinery. The following table sums up the main advantages and disadvantages of automation:

Advantages

Disadvantages

Speeding up the developmental process of society

Disastrous effects on the environment (pollution, traffic, energy consumption)

Replacing human operators in tasks that involve hard physical or monotonous work

Sharp increase in unemployment rate due to machines replacing human beings Saving time and money as human operators can be Technical limitations as current technology is unable to employed in higher-level work automate all the desired tasks Replacing human operators in tasks done in dangerous environments (fire, space, volcanoes, nuclear facilities, underwater) Higher reliability and precision in performing tasks

Security threats as an automated system may have a limited level of intelligence and can make errors

Economy improvement and higher productivity

High initial costs as the automation of a new product requires a large initial investment

1 manufacturing 2 information technologies 3 goods 4 service jobs 5 skilled 6 morale 7 unemployment 8 lead times 9 handling 10 work flow

a b c d e f g h i j

Unpredictable costs due to research and development, which may exceed the cost saved by the automation itself

the time between the design of a product and its production the amount of confidence that a group of people have a set of tasks performed to complete a procedure the process of packing and distributing goods the industry in which machinery is used to produce goods the development and application of computer systems having the knowledge and the ability to do something well things that are made to be sold jobs in transports, communications, hospitals, energy industry, etc. the state of not having a job

427


10 Computer-aided technologies

2

Pairwork What would you like to automate in your life? In pairs, discuss the impact of automation on your own life and list its main advantages and disadvantages.

3

Read the text about automation technologies and answer the questions. Numerical control over automated devices has resulted in a rapidly expanding range of applications and human activities. Computer-aided technologies (CAx) is a broad term that means the use of computer systems to aid in the design, analysis, and manufacture of products, by serving the basis for mathematical and organisational tools used to create complex systems. It includes computer-aided design (CAD software) and computer-aided manufacturing (CAM software). The current limit of computer-aided technologies is that some abilities are well beyond the capabilities of modern mechanical and computer systems. Moreover, these technologies require high-skilled engineers and the synthesis of complex sensory data to work properly. As for costs involved, in some cases, automation is more expensive than mechanical approach. Thanks to the incredible improvements in automation technology, a number of other technologies have developed from it, such as domotics and robotics. Domotics is a field in building automation aimed at the application of automation technologies in households for the comfort and security of its residents. This means that lights, heating and conditioning systems, windows shutters, kitchen equipment and surveillance systems can be controlled by a remote control or even by a cell phone at a distance. Robotics is a special branch of automation in which the automated machines have certain human features and are used to replace human workers in factory operations. Robots are computercontrolled mechanical devices that are programmed to move, manipulate objects and interact with the environment. Nowadays more and more sophisticated robots are being built to serve various practical purposes, for example in houses, businesses, in the army and for medical appliances for disabled people. 1 What does computer-aided technologies mean? 2 Which software does CAx include? 3 What are the current limits of CAx? 4 Can you name two applications of automation technologies? 5 How does a domotic house differ from a traditional house? 6 What are robots used for?

Listening 4 6 Pairwork Think of what robots can do nowadays and tick the boxes below. Then listen and check your answers. Nowadays robots can... get sick see obstacles go underwater speak fluently handle dangerous material smell things clean nuclear waste taste food explore volcanoes move objects go to space have feelings easily walk on two legs 428


10 Sensors

5

Read the text about sensors and match each paragraph with a heading. Sensor applications    Types of sensors    What is a sensor?

1 ______________________________________________ Almost every industrial automated process requires the use of sensors and transducers, which are very advanced devices capable of measuring and sensing the environment and translating physical information (e.g. variations of light, pressure, temperature and position) into electrical signals. The sensor picks up the information to be measured and the transducer converts it into electrical signals that can be directly processed by the control unit of a system. 2 ______________________________________________ Because of the industrial and scientific importance of measuring, sensors are widely used in a variety of fields, such as medicine, engineering, robotics, biology and manufacturing. Traditional machines have difficulty measuring small differences in product size, so sensors can be particularly useful as they can discriminate down to 0,00013 millimetres. They can also detect temperature, humidity and pressure, acquire data and alter the manufacturing process. Sensors are also vital components of advanced machines, such as robots. 3 ______________________________________________ There are two types of sensors: analogue and digital. Analogue sensors operate with data represented by measured voltages or quantities, while digital ones have numeric or digital outputs which can be directly transmitted to computers. The sensors usually employed in manufacturing are classified as mechanical, electrical, magnetic and thermal, but they can also be acoustic, chemical, optical and radiation sensors. Moreover, according to their method of sensing, they can be tactile or visual. Tactile sensors are sensitive to touch, force or pressure and they are used to measure and register the interaction between a contact surface and the environment. These sensors are used in innumerable everyday objects, such as lift buttons and lamps which turn on and off by touching the base. Visual sensors, instead, sense the presence, shape and movement of an object optically. They are becoming more and more important in surveillance systems, environment and disaster monitoring and military applications.

6

CERT Read the text again and choose the correct answer. 1 Sensors pick up measured. A electrical signals B physical information C the control unit

to be

4

sensors can transmit data directly to computers. A Chemical B Digital C Analogue

2 Physical data is translated into electrical signals by . A the transducer B the sensor C a computer

5 Tactile sensors are commonly used in . A everyday objects B military applications C sophisticated machinery

3 Sensors manufacturing process. A can’t be B are never C can be

6

used to alter the

sensors are used to localise

objects in space. A Analogue B Visual C Tactile 429


10 7

7

Read the text about the computer mouse and underline the correct option. Then listen and

check. A common example of the application of sensors to everyday objects is the computer mouse. The mechanical mouse has a ball which rotates and translates the (1) motion/temperature of our hand into signals that the computer can use. Developed in late 1999, the optical mouse is an advanced computer pointing device that uses a light-emitting diode (LED), an (2) acoustic/optical sensor and a digital signal processor (DSP) in place of the traditional mouse ball and electromechanical transducer. The optical mouse actually uses a tiny (3) camera/recorder to take thousands of pictures at a rate of more than 1,000 images per (4) minute/second. Optical mice can work on many surfaces without a mouse pad, thanks to an LED that bounces light off the surface it is on onto an optical sensor. The sensor sends each image to a digital signal (5) processor/transistor which examines how the patterns have moved since the previous image, determining how far the mouse has moved. The computer then moves the cursor on the screen based on the coordinates received from the mouse. This happens hundreds of times each second, making the cursor appear to move very (6) slowly/ smoothly. The best surfaces reflect but some others, for example a blank sheet of white (7) plastic/paper, do not allow the sensor and DSP to work properly because the details are too small to be detected. In addition to LEDs, a recent innovation are laserbased optical mice that detect more surface details compared to LED technology. This results in the ability to use a mouse on almost any surface and to (8) reduce/increase the resolution of the image.

8

Read the text again and match each sentence with its ending. 1 A mechanical mouse 2 There are no sensors 3 In late 1999 4 An optical mouse 5 A DPS 6 Not all surfaces 7 Laser-based optical mice

a b c d e f g

the optical mouse was developed. provide high-resolution images. can reflect light in the same way. in a mechanical mouse. has got a scroll ball mechanism inside. uses a light-emitting diode, an optical sensor and a DSP. is a processor for digital signals.

Speaking 9 Pairwork Think about all the robotic devices you use in your everyday life, or the ones you have at home. Make a list, choose the most important for you and describe them to your partner. At home: mixer, air conditioning...

430


Eco Cars 11 Electric and hybrid cars

1

Alternative fuels are changing the world of transport. Which, in your opinion, is the true alternative to petrol? A electricity B hydrogen

C fuel cell D methane

E LPG (Liquefied petroleum gas)

The primary difference between a hybrid car and an electric car is that the hybrid car derives some of its power from a conventional gasoline engine, whereas a true electric car uses electrical sources only, and thereby it is a completely non-polluting, zero-emission vehicle (ZEV). In an electric car the battery transfers energy to an electric motor and the motor turns a drive train which then turns the wheels. Up to 80 percent of the energy in the battery is transferred directly to power the car, making it a highly efficient mode of transport. That means owners of an all-electric vehicle never have to fuel up at the petrol pump — they can recharge the battery at home or at charging stations along the route. Compared with conventional vehicles, the driving range of an all-electric vehicle – typically about 100 miles per charge – may seem limited. However, when you consider that the average American daily commuting distance is under a 40-mile roundtrip, it becomes clear that EVs are a reliable and comfortable way to regularly get from point A to point B, while reducing the dependence on oil and petrol and contributing to a sustainable environment. In addition, with an ever-increasing number of public charging stations, it is also becoming easier to refuel, even when drivers are on their journey. It is important to remember that the driving distance for electric vehicles will become further as advanced types of batteries, fuel cells, hybrid systems and other technologies continue to be developed. One easy way to remember what a hybrid vehicle is, is to think of the meaning of the word hybrid – the offspring of two very different species – yet one that combines characteristics of both. Take an electric motor and combine it with an internal combustion engine and we have one baby that combines the best of both, from two very different parents. All hybrids have one thing in common: they are always in a constant state of drawing from or recharging the battery. A hybrid car is composed of: • an electric motor to provide the power to the wheels; • batteries to supply the motor with electricity; • a petrol engine powering, which is separate; • a generator. The petrol engine is very small and made of aluminium, magnesium and special plastics which are lightweight materials. When the car is decelerating or standing still, the batteries recharge. The hybrid car is essentially an electric car with a built-in recharger. per charge a carica commuting distance tragitto giornaliero di un pendolare roundtrip viaggio di andata e ritorno offspring prole built-in integrato socket presa di corrente

Advantages

of electric vehicles

•T hey are fume-free; smooth driving and make no noise.

Disadvantages

of electric vehicles

• Cost of buying and operating the vehicle.

•T hey are less expensive.

• The limited distance capacity of one single charging.

•R efueling can be easily done at home overnight, at work or at public electric charging units.

• The fear of not finding a socket or station to charge the vehicles when travelling long distances.

431


11 2

CERT Read the text and choose the correct option. 1 An electric vehicle is... A mainly powered by the battery. B partially powered by the battery. C powered by the battery and the combustion engine.

4 EVs are... A not smooth driving but noiseless. B smooth driving, noiseless and environmentally friendly. C smooth driving, noiseless but pollutant.

2 An all-electric vehicle... A can fuel up at a petrol pump. B never fuels up at a petrol pump. C can fuel up both at a petrol pump or at a charging station.

5 Hybrid cars can run thanks to... A air conditioning. B speed. C batteries.

3 EVs have... A a limited capacity per charge. B the same capacity per charge compared with conventional vehicles. C more capacity per charge than conventional vehicles.

6 The hybrid car engine is made of... A heavy materials. B iron. C lightweight materials. 7 When a hybrid car is standing still, batteries... A oxidate. B recharge. C run down.

Vocabulary 3 Complete the text about hybrid cars with the words from the box.

gallon    everywhere    purchasing    petrol    need    advancement benefits    miles    expensive    save

A hybrid car is a very clever (1) _________________ in the automobile industry and you should think about (2) _________________ one the next time you find yourself looking for a new vehicle. It has (3) _________________ for both you and the environment. Let’s assume you are looking at buying a hybrid car compared with your current (4) _________________ powered vehicle. Let’s also assume that you drive 12,000 (5) _________________ a year in your Chevrolet Malibu and that your vehicle gets 20 miles to the (6) _________________. It would take you 600 gallons of petrol a year to get you to where you need to go. You could be very frustrated because petrol is very (7) _________________ these days. Now if you look at buying a hybrid car, and it received 60 miles to the gallon, it would only take you 200 gallons of petrol a year to get you (8) _________________ you needed to go. If you are able to (9) _________________ yourself from having to buy 400 gallons of petrol a year, why would you not do this? That is the reason you (10) _________________ to look into buying a hybrid car.

Speaking 4 Pairwork Ask and answer questions about the benefits offered by hybrid cars. A In your opinion, what are the benefits offered by hybrid cars? B I think hybrid cars can help us reduce pollution.

432


11 Fuel cell vehicles

5

Reorder the words to make a definition of what a fuel cell is. Then read the text and check your answer. is / electricity / a / chemical / fuel / device / cell / a / by / that / a / generates / reaction A fuel cell is a device that converts the element hydrogen into electricity by chemically mixing it with oxygen, from which results water. It is like a battery that is constantly fed with fuel. Hydrogen is the most common fuel, but hydrocarbons such as natural gases and alcohols such as methanol are sometimes used. Fuel cells are different from batteries in that they require a constant source of fuel and oxygen to run, but they can produce electricity continuously for as long as these inputs are supplied. Many demonstration fuel-cell-powered cars of very respectable performance have been made. However, there are many problems and challenges for fuel cells to overcome before they become a commercial reality as a vehicle power source. The main problems centre around these issues: • cost: they are currently far more expensive than IC engines, and even hybrid IC/electric systems • cooling: the thermal management of fuel cells is actually rather more difficult than for IC engines • hydrogen supply: hydrogen is the preferred fuel for fuel cell cars, but it is very difficult to store and transport. Given the novelty of hydrogen cars, there are still relatively few hydrogen-refuelling stations worldwide. However, the number of stations is increasing with the advent of fuel cell vehicle demonstration programmes in the USA, Europe and the Far East. As a result, more and more hydrogen stations, some of which are publicly accessible, are being built in cities throughout Europe, including Amsterdam, Barcelona, Hamburg, London, Luxembourg, Madrid, Porto, Reykjavik, Stockholm and Stuttgart. There is a great hope that the problems can be overcome, and fuel cells can be the basis of less environmentally damaging transport.

6

Read the text and decide if the statements below are true (T) or false (F), then correct the false ones. 1 Fuel cells are devices that convert chemical energy directly into electricity. 2 The most common fuel is methanol. 3 Fuel cells generate electricity with very high pollution. 4 Unlike batteries, fuel cells require a constant source of fuel and oxygen to run, but they can produce electricity continuously for as long as these inputs are supplied. 5 Fuel cells are not as expensive as IC engines. 6 Refuelling is not very simple. 7 The cooling of fuel cells is actually rather more difficult than for IC engines.

_____ _____ _____ _____ _____ _____ _____

433


11 Vocabulary 7 Read the text about hydrogen and complete it with the words from the box. LPG    cell    hydrogen    motor    electrolysis    combustion thermochemical    fuels    source    electricity

Hydrogen or H2 gas is highly flammable and will burn at concentrations as low as 4% H2 in air. For automotive applications, hydrogen is generally used in two forms: internal (1) _____________________ or fuel (2) _____________________ conversion. In combustion, it is essentially burned as conventional gaseous (3) _____________________ are, whereas a fuel cell uses the (4) _____________________ to generate (5) _____________________ that in turn is used to power electric (6) _____________________ on the vehicle. Hydrogen gas must be produced because it is not an energy (7) _____________________. Hydrogen can be obtained through various (8) _____________________ methods utilising methane (natural gas), coal, (9) _____________________, or biomass gasification from (10) _____________________ of water, or by a process called thermolysis.

Listening 8 8 Listen to this extract about fuel cells and answer the questions. 1 What kind of devices are fuel cells? 2 What is the chemical energy of hydrogen and oxygen converted into? 3 Why do fuel cells emit few emissions? 4 What is PEMFC? 5 What do hydrogen atoms give up during the electrical process? 6 What is a cathode? 7 What is an anode? 8 Are fuel cells as efficient as petrol engines?

Speaking 9 Prepare a short presentation (3-5 minutes) about types of alternative cars. Writing 10 What have you learnt about electric, hybrid cars and fuel cell cars? Write a short essay (100-150 words) about them following these guidelines: • differences between electric, hybrid cars and fuel cell cars • advantages of using electric cars • disadvantages of using electric cars • advantages and the disadvantages of using fuel cell cars

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11

Mind Map 11 Complete the mind map with the words form the box. fuel cells    four-stroke    diesel    fuel injection    handbrake petrol    hybrid    brakes    ethanol    battery

MOTOR VEHICLES

ENGINES

CAR SYSTEMS two-stroke

Exhaust

petrol Combustion engines

1 _________ 2 _________ carburisation

hybrid

Fuel 7 _________

Lubrication 3 _________ Alternative engines

electric

Ignition

4 _________ 8 _________ Electrical sensors

5 _________ Fuel

Hydraulic

diesel 6 _______ biofuels biodiesel

Cooling

air conditioning

9 _________ Braking 10 _________

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12 Technical Assistance 1 CERT

Read the text about maintenance and answer the questions. Any machine and device must be controlled regularly in order to avoid the risk of damage or breakdown of single parts due to long usage. Sometimes, if a proper maintenance is not done, a fault could occur, with negative consequences on the production process and on the workers’ safety. The primary goal of maintenance is to avoid or mitigate the consequences of failure of equipment. This includes performing routine actions to keep the device in working order and prevent the failure before it actually occurs (preventive maintenance), or fixing equipment after breakdown (corrective maintenance). Preventive maintenance is designed to preserve and restore equipment reliability by replacing worn components before they actually fail. It includes maintenance activities such as partial or complete overhauls at specified periods, oil changes and lubrication. The ideal preventive maintenance is a combination of technical, administrative and managerial actions to prevent all equipment failure. If carried out properly, preventive maintenance can extend the life of the equipment. Corrective maintenance, sometimes simply called ‘repair’, is carried out to get equipment working again. It aims at restoring the functionality of a machine so that it can continue to perform its work. This type of maintenance can be very expensive because sometimes equipment needs to be replaced, with substantial costs for the company. Generally, maintenance is scheduled according to: the original equipment manufacturer’s recommendations; codes and legislation within a country; consultancy advice; previous maintenance; most important measured values and performance indications.

1 Why is maintenance important? 2 What are the main types of maintenance? 3 What is the function of preventive maintenance?

2

Read the text again and match the words with their definitions. 1 fault 2 to mitigate 3 to fix 4 overhaul 5 worn 6 lubrication 7 code 8 consultancy

436

4 Which activities does it include? 5 What is maintenance called if it occurs after a failure? 6 Why can corrective maintenance be expensive?

a b c d e f g h

damaged and in poor condition as a result of much use a set of rules about how something must be done expert advice within a particular field applying a greasy substance to reduce friction a break or other defect in a piece of machinery to do the necessary work to repair something that doesn’t work properly to make something less severe or unpleasant a careful examination of a machinery or system that must be repaired


12 Auto maintenance

3 How well do you know the components of a car? Look at the picture and label each part with the words in the box. seat    battery    radiator    tyre    spare wheel    steering wheel disk brake    oil filter    trunk    windshield wiper

1 5

3

2

4

6 7 8

9 10

4 Quiz In pairs, take this quiz about car maintenance, then read the text on page 438 to check your answers. Cars are not just a luxury item to purchase one day and forget about until something happens. A properly maintained car not only lasts longer, but it is also less likely to break down unexpectedly. Take this quiz and test your knowledge of car maintenance! 1 Auto maintenance doesn’t entail replacing fluids. True   False

5 If a car is exposed to extreme weather conditions it must be checked more often. True   False

2 It is not possible to do preventive maintenance to cars. True   False

6 It is not possible to replace windshield wipers. True   False

3 Car maintenance must be scheduled keeping in mind different factors. True   False

7 Brake fluid lasts forever. True   False

4 The distance travelled every day doesn’t affect the functionality of a car. True   False

8 Car maintenance tasks should never be combined in one single service. True   False

437


12 5 Read the text and match the correct maintenance task with each picture. 1

2

Auto maintenance describes the act of inspecting or testing the condition of car subsystems (e.g.: engine, brakes, radiator, etc.) and replacing parts and fluids. Thanks to regular maintenance it is possible to ensure the safety, reliability and comfort of a car, while during preventive maintenance, a number of parts are replaced to avoid major damage or for safety reasons. Car maintenance is usually scheduled according to different factors, such as the year or model of the car, its driving condition and driver behaviour. When scheduling auto maintenance, car manufacturers recommend keeping in mind some factors that may affect the functionality of car subsystems. Some of these factors are: the number of trips and the distance travelled every day; the exposure to particular climate conditions (extreme hot or cold); long-distance cruising and whether the car has to tow a trailer or other heavy loads. Common car maintenance tasks include: car wash check or replace the engine oil and oil filters inspect or replace windshield wipers inspect tyre pressure and wear check wheel alignment check, clean or replace battery terminals inspect or replace brake pads and fluids inspect or replace air filter lubricate locks and hinges check all lights inspect or replace spark plugs tighten chassis bolts Some tasks that have equivalent service intervals can be combined into one single service known as a tune-up. In modern cars, where electronics control most of the car’s functions, the traditional tune-up has been replaced by incorporated software that takes care of the engine by constantly checking thousands of sensor signals. Completed maintenance services are then recorded in a service book which is very useful for keeping track of the car service history.

438

3

4

5

6

7

8


Lab Corner

12

Listening 6 9 Listen to the dialogue between Mrs Farrell and her mechanic and complete it with the missing words. Mechanic Mrs Farrell Mechanic Mrs Farrell

Machanic Mrs Farrell

Mechanic Mrs Farrell Mechanic Mrs Farrell Mechanic Mrs Farrell Mechanic on Friday... Mechanic

Mrs Farrell

7

Good afternoon, Mrs Farrell. Good afternoon, John. How are you? I’m fine, thank you. How can I (1) help you? Well, I need a complete (2)  for my car. Next week my husband and I are going on holiday by car. It’s going to be a long journey all the way to Spain and I want my car to be in (3)  . Sure. No problem. Have you checked your car recently? Let me think... It must have been last year, in June, when the car wouldn’t (4)  . Anyway, it should all be written in the (5)  . It’s in the glove compartment. OK, I’ll take it. Let’s see... Oh, yes, it was the battery and I changed it. Are there any problems at the moment? Not really, but I think the (6)  needs to be replaced. Sure. I’ll check the filters too. Yes, I think it’s a good idea. Could you (7)  the tyres as well? And maybe wash it; it’s so dirty. Well, John, when do you think the car will be ready? Actually, I’m quite busy at the moment, Mrs Farrell, so I could give it back to you next Friday. Would that be convenient for you? Yes, it’d be perfect, because we’re leaving on Sunday. I’ll call you on Tuesday for a confirmation then. All right. Goodbye, Mrs Farrell. Good morning, Mrs Farrell. Here are your keys. I replaced the engine oil and the (8)  . Then I checked the tyres and the brakes too. I had to (9)  the spark plugs because they were fouled. I also (10)  the electronics and then I washed the car. Now everything is OK, you can set off with no worries. That’s great! Thank you very much, John.

Read the dialogue again and answer the questions. 1 What does Mrs Farrell want? 2 Why does she need a complete tune-up? 3 What is written in the service book?

4 What does the car need to be done? 5 When will the car be ready? 6 What did John replace in the car?

Vocabulary 8 Translate the keywords from the unit in your own language. bolt \b´Ult\_____________________________________ brake \breIk\___________________________________ brake pad \breIk pœd\____________________________ chassis \"Sœsi\__________________________________ consultancy \k´n"sølt´ntsi\________________________ due to \dju… t´\__________________________________ to entail \tu… In"teIl\______________________________ exposure \Ik"sp´UZ´“r‘\____________________________ failure \"feIlj´“r‘\________________________________ fouled \faUld\___________________________________ glove compartment \gløv k´m"pA…tm´nt\_____________ hinge \hIndZ\___________________________________ lock \lÅk\______________________________________

lubrication \lu…brI"keISn\__________________________ overhaul \"´Uv´hO…l\______________________________ spare wheel \spe´“r‘ wi…l\_________________________ spark plug \spA…k pløg\___________________________ steering wheel \"stI´rIN wi…l\_______________________ to tighten \t´ "taItn\______________________________ to tow \t´ t´U\__________________________________ trailer \"treIl´“r‘\_________________________________ trunk \trøNk\___________________________________ tyre \"taI´“r‘\____________________________________ wear \we´“r‘\___________________________________ windshield \"wIndSi…ld\___________________________ worn \wO…n\____________________________________

439


13 Materials A mechanical engineer uses different materials to build machinery or tools. A specific knowledge of materials is required, concerning qualities, properties, costs and general characteristics.

1 What are these objects made of? Match the words in the box with the pictures, then read the text.

W

hen a machine or a tool is made, the most suitable material must be chosen by considering its properties, which can be classified as mechanical, thermal, electrical and chemical. The main types of materials used in mechanical engineering are metals, polymer materials, ceramics and composite materials. The most commonly used materials are metals, which can be divided into ferrous and non-ferrous. They can be used in their pure form or mixed with other elements. In this second case we have an alloy and it is used to improve some properties of the metals. The most commonly used ferrous metals are iron and alloys which use iron. Because iron is soft and pasty it is not suitable to be used as a structural material, so a small amount of carbon is added to it to make steel alloy. Non-ferrous metals contain little or no iron. The most common non-ferrous metals used in mechanics are copper, zinc, tin and aluminium. Some common non-ferrous alloys are brass (formed by mixing copper and zinc), bronze (formed by mixing copper and tin) and other aluminium alloys which are used in the aircraft industry. Other examples of materials used in mechanical engineering are plastic and rubber. PVC or polyvinyl chloride is a type of plastic and is used to insulate wires and cables. Rubber is a polymer and its best property is elasticity, as it returns to its original size and shape after deformation. Ceramic materials are good insulators: hard, resistant and strong, but brittle. Composite materials are made up of two or more materials combined to improve their mechanical properties. Concrete is reinforced with steel and is used in building engineering.

steel    gold    wood    plastic glass  ceramic

1

2

3

4

5

6

2

Read the text again and match the words with their definitions. 1 2 3 4 5 6 7 8

alloy steel PVC concrete brass ferrous materials ceramic iron

3 CERT

a b c d e f g h

Read the text again and answer the questions.

1 What is the basic classification of metals? 2 What are the characteristics of iron? 3 Why are alloys created?

440

a type of plastic used for insulation a combination of different metals an alloy formed by mixing iron and carbon an alloy formed by mixing copper and zinc metals containing iron a composite material used to build houses a metal not suitable as structural material a good insulator but brittle

4 Which materials are good insulators? 5 Is steel an alloy? Which metal does it contain?


13 Listening 4 10 CERT

Listen and complete the definitions with the words in the box. cooking    coins    alloy    air    copper    wires    steel carbon    gold    ferrum    expensive    ductile

Iron: I ts Latin name is (1) ferrum. It is magnetic and has a silvery colour. In prehistoric times it was used to make ornaments and weapons. If exposed to the (2)  , it oxidises. (3)  : It is one of the most widely used metals by humans. In prehistoric times it was used to make cooking utensils, (4)  and ornamental objects. It is used in (5)  and cables. (6)  : It is the most (7)  metal and is used to create precious jewellery. It is the most (8)  metal. (9)  : It is an (10)  formed from iron and (11)  . It can contain between 2.1% and 4% carbon. It is also used for (12)  utensils and pans.

Vocabulary 5 Complete the following diagram.

Materials

polymer materials

plastic

ferrous

concrete

non-ferrous

alloy

Writing 6 Write a summary of the texts in exercises 1 and 4 following the flow chart. Write about the importance in engineering of having a specific knowledge of materials.

List the materials and the main groups used in mechanics.

Tell the difference between ferrous and non-ferrous metals.

Say what an alloy is and why it is used.

Write a list of non-ferrous metals and alloys.

441


13 Metal processes 11 7 Listen and complete the texts about the different processes metals can go through.

8

Put the words in the correct order to make complete sentences. 1 taking their forms / fluid substances / into moulds / solidify ________________________________________ 2 drawing / room temperature / is done at

________________________________________

3 not essential / heat / is / in the drawing process

________________________________________

4 in the past / using / forging / a hammer / was done

________________________________________

5 can be / brittle materials / extrusion / done / with

________________________________________

6 many / is used / everyday objects / sheet forming / to make ________________________________________

9 Pairwork Read the texts again and write the correct processes that produce the objects listed below. Product

442

Process

10 CERT

Read the texts again and answer the following questions. 1 Which steps are included in casting? 2 What is the mould used for?

1 wires

_____________________

2 pasta

_____________________

3 sheet

_____________________

4 bricks

_____________________

5 tubes

_____________________

7 What does rolling consist of?

6 rods and bars

_____________________

8 What materials can be used in rolling?

7 golden leaves

_____________________

8 machine parts

_____________________

9 concrete

_____________________

3 What does drawing use in order to process metals? 4 What types of drawing are there? 5 What kind of process is forging? 6 How was forging done in the past?

9 What are the advantages of extrusion? 10 What materials can be used in extrusion? 11 What kind of process is sheet metal forming? 12 What can vary in sheet metal forming?


13

Vocabulary 11 Translate the keywords from the unit in your own language. alloy \"œlOI\____________________________________ bar \bA…“r‘\_____________________________________ bent \bent\_____________________________________ blacksmith \"blœksmIT\___________________________ brass \brA…s\____________________________________ brick \brIk\_____________________________________ brittle \"brItl`\____________________________________ cable \"keIbl`\___________________________________ casting \"kA…stIN\_________________________________ concrete \"kÅNkri…t\_______________________________ copper \"kÅp´“r‘\________________________________ die \daI\________________________________________ extrusion \Ik"stru…Zn\_____________________________ flat \flœt\______________________________________ hammer \"hœm´“r‘\______________________________

hollow \"hÅl´U\__________________________________ to insulate \tu… "InsjUleIt\__________________________ mould \m´Uld\__________________________________ to oxidise \tu… "ÅksIdaIz\___________________________ pipe \paIp\_____________________________________ rod \rÅd\_______________________________________ rubber \"røb´“r‘\_________________________________ shape \SeIp\____________________________________ sheet \Si…t\_____________________________________ steel \sti…l\_____________________________________ tin \tIn\________________________________________ tool \tu…l\______________________________________ tube \tju…b\_____________________________________ wire \"waI´“r‘\__________________________________

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14 Machine Tools Machines

Turning machine The engine lathe is the most important of all the machine tools. It is used to produce external or internal cylindrical surfaces. The piece is held by the machine and is rotated while a cutting tool removes excess metal from the external diameter. Internal turning consists of enlarging and finishing a hole. Shaper This is a metal-cutting machine used to produce or modify flat surfaces. The cutting tool moves cutting on the forward stroke, with the piece feeding automatically towards the tool during each return stroke. Shapers can be horizontal or vertical.

Drilling machine It is used to produce circular holes in metal with a twist drill. It also uses a variety of other cutting tools to perform the basic hole-machining operations.

1

Read the texts about metalworking processes and complete the table. Machine tool turning machine

2

Final result external and internal flat surface specific shape holes flat surface specific shape cut pieces finishing

Description It removes excess metal from the external diameter. It enlarges and finishes a hole. It cuts flat metal surfaces. It uses a twist drill to make holes. It cuts the piece. It changes the shape of a workpiece. It cuts various parts using a continuous band of metal with teeth. It removes excessive material from parts.

Read the texts again and decide if the following sentences are true (T) or false (F). 1 Turning machines remove excess metal from the external diameter and enlarge and finish a hole. _____ 2 Shapers can only be vertical. _____ 3 Drilling machines use a twist drill to make circular holes. _____ 4 Milling machines can only be manually operated. _____ 5 Grinding machines remove excessive material from parts. _____ 6 Band saws use a band of metal with teeth to cut various parts. _____ 7 Presses are not dangerous if operated by both hands. _____

444


14 Milling machine This cuts flat metal surfaces. The piece is fed against a rotating cutting tool. Cutters of many shapes and sizes are available for a wide variety of milling operations. Milling machines may be manually operated, mechanically automated, or digitally automated via computer numerical control (CNC).

Press This is a machine tool that changes the shape of a workpiece. Historically, metal was shaped by hand using a hammer. Machine presses can be dangerous. Bi-manual controls (controls which require both hands to be on the buttons to operate) are a very good way to prevent accidents.

3

Grinding machine This removes excessive material from parts that are brought into contact with a rotating abrasive wheel. Grinding is the most accurate of all the basic machining processes, but also the most time consuming.

Band saw It is a power tool which uses a blade consisting of a continuous band of metal with teeth along one edge. The band usually rides on two wheels rotating in the same plane. Band saws are used for woodworking, metalworking, or for cutting a variety of other materials, and are particularly useful for cutting irregular or curved shapes. A constant flow of liquid is poured over the blade to keep it cool and preventing it from overheating.

Read the text about CNC and put the sentences in the correct order. Then listen and check. 12

Computer Numerical control (CNC) refers to the automation of machine tools in manufacturing processes. The machines are controlled by computer software which carries out a series of operations automatically. The first NC machines were built in the 1940s and 1950s. They are used to cut and shape products, such as automobile parts that need precise specifications. Parts must be carefully planned and prepared by CNC programmers. First they view the three-dimensional computer aided designed part. Then they calculate where to cut, the speed and shape and select the tools and materials. The CNC programmers translate the planned machine operations into a set of instructions. These instructions are translated into a computer aided manufacturing (CAM) program containing a set of commands for the machine. The commands are a series of numbers which explains where to cut and the position of material. The computer checks all the operations made by the machine tools. a b c d e f

The planned machine operations are translated into a set of instructions. These instructions are translated into a CAM program. The program contains a set of commands for the machine. It is calculated where to cut and tools and materials are selected. The computer checks all the operations made by the machine tools. Programmers view the part in its three-dimensional computer aided design.

445


14

Lab Corner

Safety on the workplace

4 Read the texts about safety equipment and match the words in the box with the correct description. hearing protection    hard hats    respirator    safety glasses    face shield    overall

Listening 5 13 Listen to the dialogues and complete the table with the equipment and the hazard mentioned. Dialogue 1 2 3 4 446

Equipment

Hazard


14

Mind Map 6

Complete the mind map with the words form the box. thermoplastics    expansion    density    silicon    steel    copper lead    titanium    hardness    elasticity    conductivity    zinc

MATERIALS

TYPES

PROPERTIES refractory ceramic fibre Ceramics

plasticity concrete

8 ______________ strength

1 _________

Mechanical

Composites

9 ______________ cermet fatigue brittleness

2 __________ cast iron ferrous 3 __________

conductivity wrought iron Thermal

Metals

melting point 10 _____________

aluminium 4 _______ non-ferrous brass 5 _______ silver

Electrical Magnetic

11 _____________

resistivity

6 _______ thermosettings Polymers

platinum

7 ___________ 12 _____________

rubber Chemical Nanomaterials

resistance atomic volume

447


Ready for PLANET ENGLISH Laboratory for Mechanical Engineering & Electronics

Editorial coordination and project: Simona Franzoni Editorial department: Sabina Cedraro Art director: Marco Mercatali Page design: Airone Comunicazione Picture research: Giorgia D’Angelo Production manager: Francesco Capitano Page layout: Marina Pierini Illustrated by Laura Bresciani © 2019 ELI S.r.l P.O. Box 6 62019 Recanati Italy Tel. +39 071 750701 Fax. +39 071 977851 info@elilaspigaedizioni.it www.elilaspigaedizioni.it The publisher would like to thank Rebecca Raynes for her precious contribution. No unauthorised photocopying. All rights reserved. No part of this publication may be reproduced, stored in a retrieval system, or transmitted, in any form or by any means, electronic, mechanical, photocopying, recording or otherwise, without the prior written permission of ELI. This book is sold subject to the condition that it shall not, by way of trade or otherwise, be lent, resold, hired out, or otherwise circulated without the publisher’s prior consent in any form of binding or cover than that in which it is published and without a similar condition being imposed on the subsequent purchaser. While every effort has been made to trace all the copyright holders, if any have been inadvertently overlooked the publisher will be pleased to make the necessary arrangements at the first opportunity. Printed by Tecnostampa - Pigini Group Printing Division - Loreto, Trevi - Italy 19.83.188.0P ISBN 978-88-536-2779-7 Photo acknowledgement ELI archive, Shutterstock


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