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HYDRAULIC PAPER PLATE CUTTING PRESS WITH MULTIPLE DIE

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International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 11 Issue: 05 | May 2024

www.irjet.net

p-ISSN: 2395-0072

HYDRAULIC PAPER PLATE CUTTING PRESS WITH MULTIPLE DIE Tayyib Raila1, Viresh G Patil2, Syed Tauqeed Ahmed3, Uzair Jalali on t Size 12 Porf. Vaijanath Patil5, Dr. Rajendra M Galagali6, Prof. Vishwanath M. K 1,2,3,4 Students, Department of Mechanical Engineering, S.G. Balekundri Institute of Technology, Belagavi,

Karnataka, India

5Professor and Project Guide , Department of Mechanical Engineering, S.G. Balekundri Institute of Technology,

Belagavi, Karnataka, India

6Professor and HOD, Department of Mechanical Engineering, S.G. Balekundri Institute of Technology, Belagavi,

Karnataka, India

7Professor and Project Coordinator , Department of Mechanical Engineering, S.G. Balekundri Institute of

Technology, Belagavi, Karnataka, India ---------------------------------------------------------------------***--------------------------------------------------------------------lever is pulled outside, changing the valve's direction. Abstract - Comfort coupled with safety and simplicity is

Reversing the direction of oil flow causes the piston to go backward.

what man strives for. Our project has been to bring about both the eliminate human efforts in the industry our effort has resulted in development of a new "Hydraulic Paper Plate Cutting Press with Multiple Die". The project present a basic as well as very professional treatment of the subject in a very comprehensive, based on learning effort and understanding capability of today as per their levels. The process is simple and comfortable. Basic calculation, drawing, designing is included in the project. The salient features of our process can be listed as the mechanism used is very simple, easy for operation.

This completes the forward movement. The primary function of the press is to bring the ram to the home position. To do this, the hand lever of the direction control valve is pushed inside, changing the direction from P to B and A to T.

OBJECTIVES: I.

To make a device which is suitable economical for small Scale industries: taking in to consideration the cost factor this device is suitable for small scale as well as big scale industries

II.

Taking safety as prime consideration: This device is safer in all respects.

III.

To build a device which can bend, cut, shape etc without applying greater force

INTRODUCTION Linear actuators that transform fluid into mechanical power are called cylinders. They go by the names JACKS and RAMS as well. High pressure is applied to hydraulic cylinders, which result in significant forces and accurate movement. As a result, they are built to endure great forces and are made of sturdy materials like steel. Pneumatic cylinders can only be used at pressures of about 10 bar since using them at higher pressures can be hazardous due to the expanding nature of gas. As a result, they are made of lighter materials like brass and aluminum. It is challenging to accurately control the velocity of a pneumatic cylinder since a gas is a compressible material. Pneumatic and hydraulic cylinders operate on the same fundamental theories. The mechanical press work was done by this equipment.

METHODOLOGY: In achieving the aim of this work, parts of the machine were designed using various design equations. The detailed drawing of developed hydraulic press machine was done using solid edge software. In fabricating the machine, mild steel was used as the locally used sourced material. The use of mild steel is because its strength, rigidity, and machin ability fall within the design specification. It is also available and cost-effective. Apply principles of fluid dynamic to design a hydraulic system that optimizes power transmission, pressure control, and fluid efficiency. Consideration should be given to pump selection, and hydraulic circuit design.

It is made up of a hydraulic cylinder. According to the hydraulic circuit, oil passes through each component and begins to flow outward when the hand pump lever is pulled. This oil is connected to the P-port of the direction control valve, which drives the cylinder piston rod forward. The direction control wall conspiring of "P" port to "t" port, which is in the generally assisted position direction, can be changed, as can the direction of the fluid flowing, using the hand-operated direction control valve. The oil is connected from port "P" to port "T" when the

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