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NOVEMBER 2020
THE RECYCLING ISSUE Can CHEMICAL RECYCLING produce virgin-quality regrind? The ins and outs of EXTRUDING RECYCLED PLASTICS How to keep track of YOUR REGRIND
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NOVEMBER 2020 VOLUME 79 • NUMBER 5
FROM THE ARCHIVES
For now, NPE 2021 is still scheduled to go ahead as a live event next May. We’ll see what happens, but a preview article in our May 1988 issue predicted with confidence how NPE 1988 would unfold. We noted that the show would be the biggest NPE yet, with 900 exhibitors and 650,000 square feet of exhibit space, up from 738 exhibitors and 480,000 square feet of space at the previous show in 1985. And the Canadian presence would also be a record-setter, with 35 companies set to have their own booths and a further group sharing space in a 4,100-square-foot stand rented by Canada’s Department of External Affairs.
Number of the month:
$263.4 million*
* Preliminary estimate of shipments value, in U.S. dollars, of plastics processing machinery from reporting companies in Q2 2020. (See pg. 7)
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Cover Photo: Bits and Splits - stock.adobe.com
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contents
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5 cover stories / features
in every issue 4 Editor’s View: A bad plan at a bad time 5 Ideas & Innovations: 3D-printed Lego-like bricks can heal soft tissue, bone 6 News: • Feds moving ahead with single-use plastics ban • Plastics machinery shipments continue to fall in 2020 • New CEO at Magna in 2021 • Supplier News and People 19 Technology Showcase
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EXTRUSION: The ins and outs of extruding recycled plastics
Many extrusion shops want to use recycled plastics these days, but there are issues involved, including material variability, contamination, and moisture. So it’s a good thing that OEMs are offering systems tailored to overcome these challenges.
13 RECYCLING: The Big Three of chemical recycling
In the quest to create virgin-quality regrind for packaging applications, the chemical recycling options of pyrolysis, solvent dissolution, and chemical depolymerization are leading the way. PLUS: Nova and Merlin Plastics partner to use curbside recycling for consumer packaging.
16 RAW MATERIALS HANDLING: The right way to manage regrind
Does your plastics processing plant use regrind or recycled material in a variety of resin types, colours, and recipes? If so, setting up the right system to track and manage it all can save you inventory, production time, and money.
21 Advertising Index 22 Technical Tips: The importance of mold cooling
Visit us at www.canplastics.com November 2020 Canadian Plastics
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Canadian Plastics magazine reports on and interprets developments in plastics markets and technologies worldwide for plastics processors, moldmakers and end-users based in Canada.
editor’s view
www.canplastics.com EDITOR Mark Stephen 416-510-5110 Fax: 416-442-2230 mstephen@canplastics.com
A bad plan at a bad time
A
s of this writing in mid-October, it looks like Canada’s second wave of COVID-19 is beginning, but at least in one way things have already returned to the prepandemic normal: the plastics industry is once again in the federal government’s crosshairs. In early October, the government unveiled a farreaching plastics waste plan that bans many of the most common single-use products, including carry-out bags, straws, stir sticks, six-pack rings, and cutlery and food ware; that moves toward mandates for recycled content and tighter regulations of other plastics; and that will add “plastic manufactured items” to the “toxic substances list” under the Canadian Environmental Protection Act. While details remain to be worked out, the bans are expected to be in place by the end of 2021. The plan – which was first proposed last year and then put on hold when the first wave of the pandemic hit – has always been heavy-handed, unnecessary, and defamatory to our industry; and we can now add that it also flies in the face of recent experience. Taking this last point first, the pandemic has proven very clearly that the single-use plastic items we use every day aren’t toxic, but in fact are lifesaving. Plastic gloves, face masks, hospital gowns, drug packaging, and complex medical devices have been critical to combatting the pandemic; and less dramatically, single-serve utensils, containers, and carry-out bags have allowed restaurants to remain open, while single-use plastic bags have made it possible for people to keep going to grocery stores. So how does it help to restrict these products when the current pandemic is obviously far from over, and the threat of future global virus outbreaks is the new reality?
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The heavy-handedness lies in the fact that, as always happens with overreaching government mandates such as this, no alternative options are presented. Off the top of my head, here’s one: the government could simply let our industry continue to develop solutions for the proper disposal, collection, recycling, reuse, and repurposing of plastic products that will address legitimate environmental concerns without severely restricting the use of this material, which has many undisputed benefits. Third, the government’s plan is unnecessary because the alternative option just outlined is already being implemented. Almost all of Canada’s plastics industry has already committed, on a company-by-company basis and/or through numerous partnerships, to have all plastics packaging be recoverable or recyclable by 2030, and to have all of it actually reused, recovered, and recycled by 2040. And suiting the action to the word, the recycling sector is moving with haste to implement plans to modernize recycling systems across the country, including with national waste legislation. Lastly, by branding plastics with the incendiary, defamatory label of “toxic,” the government is lumping it together with genuinely harmful substances like mercury, asbestos, and lead. Which is preposterous. From medical devices to impact-absorbing automotive parts, plastic products save lives, they don’t take them. (And maybe the government can explain how a material that medical professionals in Canada and around the world are embracing as being implantable in the human body can be toxic?) It’s a reckless policy that shows that, despite the leading role played by plastics in fighting COVID-19 transmission, the pandemic hasn’t taught our leaders in Ottawa anything about the importance of our industry.
ASSOCIATE PUBLISHER Catherine McDonald 289-921-6520 cmcdonald@annexbusinessmedia.com ASSOCIATE PUBLISHER Stephen Kranabetter C: 416-561-5362 W: 416-510-6791 skranabetter@annexbusinessmedia.com MEDIA DESIGNER Andrea M. Smith asmith@annexbusinessmedia.com ACCOUNT COORDINATOR Cheryl Fisher 416-510-5194 cfisher@annexbusinessmedia.com CIRCULATION MANAGER Shawn Arul 416-510-5181 sarul@annexbusinessmedia.com VP PRODUCTION / GROUP PUBLISHER Diane Kleer dkleer@annexbusinessmedia.com COO Scott Jamieson sjamieson@annexbusinessmedia.com PRINTED IN CANADA ISSN 008-4778 (Print) ISSN 1923-3671 (Online) Publication Mail Agreement #40065710 2020 SUBSCRIPTION RATES 5 issues Canadian Plastics, plus Dec. 2021 Buyers’ Guide: CANADA: 1 Year $77.50 plus applicable taxes; 2 Years $123.50+ taxes USA: $176.00 (CAD) / year FOREIGN: $201.00 (CAD) / year
CIRCULATION sarul@annexbusinessmedia.com Tel: 416-510-5181 Fax: 416-510-6875 or 416-442-2191 Mail: 111 Gordon Baker Road, Suite 400, Toronto, ON M2H 3R1 Occasionally, Canadian Plastics will mail information on behalf of industry related groups whose products and services we believe June be of interest to you. If you prefer not to receive this information, please contact our circulation department in any of the four ways listed above. Annex Privacy Officer privacy@annexbusinessmedia.com • Tel: 800-668-2374 No part of the editorial content of this publication June be reprinted without the publisher’s written permission ©2020 Annex Business Media. All rights reserved. Opinions expressed in this magazine are not necessarily those of the editor or the publisher. No liability is assumed for errors or omissions. All advertising is subject to the publisher’s approval. Such approval does not imply any endorsement of the products or services advertised. Publisher reserves the right to refuse advertising that does not meet the standards of the publication. MEMBER: Magazines Canada, Canadian Plastics Industry Association.
Mark Stephen, editor
mstephen@canplastics.com
www.canplastics.com
2020-10-26 12:44 PM
ideas & innovations
3D-printed Lego-like bricks can heal soft tissue, bone
A single microcage alongside a U.S. penny for scale. Photo Credit:Oregon Health and Science University
I
nspired by Lego bricks, researchers led by a team at Oregon Health and Science University (OHSU) in Portland, Ore. have created new 3D-printed bricks that could one day be used to heal broken bones, repair human tissue, and even create artificial human organs. The small, hollow bricks serve as scaffolding onto which both hard and soft tissue can regrow better than today’s standard regeneration methods. Each brick is 1.5 mm cubed, or roughly the size of a flea. “Our patent-pending scaffolding is easy to use; it can be stacked together like Legos and placed in thousands of different configurations to match the complexity and size of almost any situation,” said Luiz Bertassoni, Ph.D., an associate professor in the OHSU School of Dentistry, who led the technology’s development. Bertassoni partnered with colleagues from OHSU, University of Oregon, New York University, and Mahidol University in Thailand to develop and evaluate the technology. When stacked together, the microcages are designed to repair broken bones better than today’s methods, in which orthopaedic surgeons typically repair more complex bone fractures by implanting metal rods or plates to stabilize the bone and then inserting biocompatible scaffolding materials packed with powders or pastes that promote healing. A unique advantage of this new scaffolding system is that its hollow blocks can be filled with small amounts of gel containing various growth factors that are precisely placed closest to where they’re needed. Bertassoni said that growth factor-filled blocks placed near repaired rat bones led to about three times more blood vessel growth than with conventional scaffolding material. “The 3D-printed microcage technology improves healing by stimulating the right type of cells to grow in the right place, and at the right time,” said team member Ramesh Subbiah, Ph.D., a postdoctoral scholar in Bertassoni’s OHSU lab. “Different growth factors can be placed inside each block, enabling us to more precisely and quickly repair tissue.”
The small devices are modular, so they can be assembled to fit into almost any space. When piecing together block segments comprising four layers of four bricks by four bricks, the researchers estimate that more than 29,000 different configurations can be created. Bertassoni and his colleagues also claim that their 3D-printed technology could be used to heal bones that have to be cut out for cancer treatment, for spinal fusion procedures, and to build up weakened jaw bones ahead of a dental implant; and that, by changing the composition of the technology’s 3D-printed materials, it might also be capable of building or repairing soft tissues. With significantly more research, they hope the modular microcage approach could even be used to make organs for transplant. Bertassoni and his team now plan to further explore the microcages’ performance in bone repair by testing the technology’s ability to repair more complex bone fractures in rats CPL and larger animals.
When color or material changes are critical, entrust your most difficult purging needs to Dyna-Purge, the industry leader for over 30 years. We offer the most effective products, outstanding customer service and technical expertise, ensuring you have the best results every time. Request a free sample of Dyna-Purge today and see for yourself. Experience the difference. 1-866-607-8743 www.dynapurge.com DYNA-PURGE and PRODUCTIVITY BEGINS WITH PURGING are registered trademarks of SHUmAN PlASTICS, INC.
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news
The Canadian government unveiled a far-reaching plastics waste plan in October that will ban a wide range of single-use plastic products and move the country towards mandates for recycled content, producer responsibility, and tighter regulations of other plastics. The plan will also seek to add “plastic manufactured items” to Schedule 1 of the Canadian Environmental Protection Act, which could declare them toxic. The proposed ban covers many of the most commonly used non-reusable plastic products, while other items will be exempted. Single-use items covered by the ban will include carry-out bags, stir sticks, beverage six-pack rings, cutlery, straws, and food packaging made from any plastics defined as being hard to recycle. Single-use plastic products not covered by the ban include garbage bags, milk bags, snack food wrappers, disposable personal care items and their packaging, beverage containers and lids, contact lenses and packaging, cigarette filters, items used in medical facilities, and personal protective equipment. The Liberal government first promised to ban single-use plastic items last year, but steps in that direction were delayed by the outbreak of the COVID19 pandemic. The government recommitted to the idea in its September 2020 throne speech. The bans are part of the government’s plan to achieve zero plastic waste by 2030. The announcement in October also
included a proposal to establish recycled content requirements in products and packaging, which the government says will spark investment in recycling infrastructure and innovation in technology to extend the life of plastic materials to keep them in the economy, and out of the environment for longer. The government has set a target of achieving at least 50 per cent recycled content in plastic products by 2030, and under the new regulations the government will require a minimum percentage of recycled content, rules for measuring and evaluating the amount of recycled content, and guidelines and related tools to help companies meet their requirements.
INDUSTRY ASSOCIATIONS PUSH BACK
But the Ottawa-based Chemistry Industry Association of Canada (CIAC) – which recently merged with the Canadian Plastics Industry Association – has come out against the proposed bans and urged the government to give time for plans being developed to modernize recycling systems across the country, including with national waste legislation. “CIAC supports the development of national waste legislation that will provide the appropriate authorities and the tools to support advancing a circular economy for plastics,” it said in a statement. “Our goal, as a society, must be to properly manage and establish a circular economy for all plastic products.”
Photo Credit: marcinm111 - stock.adobe.com
Feds moving ahead with single-use plastics ban
In particular, CIAC urged the government to delay the plan to list plastic products as toxic. Elena Matagaris, vice president of the plastics division of the CIAC, said in a report that “plastic products don’t belong anywhere near a list of harmful products that includes mercury, asbestos, and lead. It’s a criminal-law tool and it’s intended to manage toxic substances. Plastic is an inert material – it’s not toxic.” Matagaris said that branding plastics as toxic will cause “reputational damage to [the] sector [and] that’s not fair game.” Other industry associations that have raised concerns about the policy, and the designation of plastic as a toxic substance, include Canadian Manufacturers & Exporters, Restaurants Canada, and the U.S.-based groups Plastics Industry Association and Vinyl Institute. CPL
Nova Scotia pipe producer RPS acquires Fabricated Plastics’ assets Mahone Bay, N.S.-based RPS Composites Inc., a manufacturer of fibrereinforced plastic and dual laminate piping systems, has acquired the assets of Fabricated Plastics Ltd. in Maple, Ont., to add tank fabrication to its capabilities and expand capacity. The terms of the acquisition have not been disclosed. Founded in 1962, Fabricated Plas-
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tics produces vessels and tanks up to 30 feet in diameter and 60 feet high, and which are used by the chemical processing and pulp and paper markets, as well the mining, semiconductor, food and drug, and electroplating industries. The company will now operate under the RPS Composites group as RPS Composites Ontario Inc.
“[Fabricated Plastics’] commitment to safety and product quality aligns with our RPS values, and the product lines, that include ASME RTP-1 certified tanks and vessels, are an excellent strategic fit for RPS,” RPS CEO Jeff Fraser said in a statement. “We are excited by what this expanded capacity means for our current and future customers.” CPL www.canplastics.com
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news
Plastics machinery shipments continue to fall in 2020 The committee highlighted that the 2020 second quarter was up four per cent compared with the first quarter. “Although primary plastics machinery shipments are still lower than the previous quarters, the second quarter uptick is consistent with gradual improvement in the U.S. economy,” Perc Pineda, chief economist with the Plastics Industry Association, said in a news release. The machinery data includes injection molding and extrusion equipment. The value of shipments of single- and twin-screw extruders fell 35.8 per cent and 30.1 per cent, respectively, in the second quarter. Shipments of injection
New CEO at Magna in 2021
Canadian automotive parts supplier Magna International Inc. has named Seetarama (Swamy) Kotagiri, 51, as its next CEO, effective Jan. 1, 2021. The 21-year veteran of the Aurora, Ont.-based company will succeed Don Swamy Kotagiri Photo Credit: Magna Walker, 64, who will retire International Inc. at the end of 2020. “Given Swamy’s role in aligning the company’s strategy with the megatrends impacting new mobility and the ‘car of the future,’ he is the right leader to take Magna forward,” William Young, chairman of Magna’s board of directors, said in an Oct. 20 statement. Kotagiri is currently Magna’s president, and previously served as the company’s chief technology officer and as president of Magna Electronics, Magna Powertrain, and the firm’s power and vision segment; he also held earlier engineering and operating positions at Cosma International, a Magna operating unit. He holds a master’s degree in mechanical engineering from Oklahoma State University with a specialization in materials and structural engineering. Walker’s career at Magna spans 33 years, with the last 15 as CEO, his second stint in the role. He also served as CEO of former Magna unit Intier Automotive, its interiors business, between 2001 and 2005. He also was CEO of Magna between 1994 and 2001. CPL
molding equipment were down 8.5 per cent compared to the same quarter a year ago. Plastics machinery exports in the second quarter totalled US$289 million, while imports rose by 15 per cent to US$649.5 million, resulting in a trade deficit of US$360.5 million, which is down nine per cent compared with the second quarter of 2019. Canada and Mexico remain the top export markets for U.S. equipment suppliers. Combined exports to the USMCA trade partners totalled US$134.5 million, representing 46.5 per cent of total U.S. plastics machinery exports in the second quarter. CPL
M. Holland co-founder Joan Holland passes away Joan Holland, co-founder and chairperson of the board emeritus at Northbrook, Ill.-based resin distributor M. Holland Co., died in Chicago on Sept. 8 at age 91. Along with her late husband Marvin Holland, she founded the firm in 1950 from the couple’s apartment in Chicago with several hundred dollars she had saved. The company grew from a small, regional plastic resin distribution company into an international business with customers throughout North and South America and Europe; along the way it moved into a 160,000-square-foot warehouse in Chicago in 1990, expanded into Canada with the founding of M. Holland Canada Co. in 2004, and expanded into Mexico in 2015. M. Holland currently sells more than US$1 billion of materials to more than 4,000 customers annually. After Marvin Holland’s death at age 70 in 1994, the couple’s son Edward became the president and CEO and Joan Holland assumed the role of chairperson. CPL
Ontario molder Innotech gets government funding for innovation
Toronto-based automotive parts manufacturer Innotech Precision Inc. is receiving $98,582 in funding from the Ontario government to help improve efficiency, productivity, and build capacity. The funding is part of the Ontario Automotive Modernization Program and will be matched 1:1 by Innotech. Innotech provides tooling, engineering, and injection molded components for the automotive industry. The funding will go towards implementing real-time automated monitoring systems, which includes vision and production data analytics technology. The investment will also improve manufacturing efficiency and support sales growth. The project is expected to lead to the creation of six new jobs while helping to retain 53 jobs at the company. CPL November 2020 Canadian Plastics
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Photo Credit: M. Holland Co.
Plastics machinery shipments in North America continue to slump in 2020, according to the latest statistics from the Plastics Industry Association in Washington, D.C. According to the association’s committee on equipment statistics, the preliminary estimate of shipments value from reporting companies totalled US$263.4 million in the second quarter, a drop of 10.7 per cent from the same period a year ago – a larger drop than the committee reported in the first quarter of 2020. In May, it reported that first quarter shipments had fallen 6.9 per cent compared to the same period in 2019, to US$254 million.
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news
Nova sells its expandable styrenics business to Alpek
Calgary-based Nova Chemicals Corp. has sold its expandable styrenics business to Mexican conglomerate Alpek SAB de CV for an undisclosed price. The sale includes manufacturing plants in Painesville, Ohio, and Monaca, Pa. The business being acquired makes expandable PS resin and Arcel-brand styrenic copolymers, which are used in packaging, construction, cups and containers, and other markets. In an Oct. 19 statement, Nova officials said that the sale is an important step in the firm’s plan to focus on its olefin and PE business. “This transaction provides us with immediate cash generation to further strengthen our balance sheet and focus on the safe and successful completion and start-up of our world-class Advanced Sclairtech technology facility under construction in [Sarnia,] Ontario,” Nova president and CEO Luis Sierra said in the statement. Monterrey, Mexico-based Alpek is a global supplier of PET and purified terephthalic acid, and a supplier of expandable PS and recycled PET in the Americas. The firm operates 28 plants in Canada, the U.S., Mexico, Brazil, Argentina, Chile, and the U.K., and employs more than 6,000 workers. The sale is expected to close in the fourth quarter of 2020. CPL
SUPPLIER NEWS –P olyExpert Inc., a Laval, Que.-based manufacturer of extruded blown film, has attained Safe Quality Food (SQF) certification. Recognized by the Global Food Safety Initiative, the SQF certification is designed to meet industry, customer, and regulatory requirements for all sectors of the food supply chain, from farm to retail stores. PolyExpert manufactures LDPE, LLDPE, and HDPE films in single- and multi-layer versions for markets such as lamination, foods packaging, multi-wall paper bags, and agricultural (mulch) films. – Chemical maker Solvay has appointed Vanderbilt Chemicals LLC as the distributor of its Tecnoflon fluoroelastomers (FKM) and perfluoroelastomers (PFR FFKM) in North America. Headquartered in Norwalk, Conn., Vanderbilt is a wholly owned subsidiary of R.T. Vanderbilt Co. Inc. Solvay’s family of Tecnoflon FKM and PFR FFKM products are designed for use in sealing applications in aggressive chemical and high-heat environments, such as those found in the automotive, industrial, semiconductor, and energy industries.
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PEOPLE Barry Arkles
Mike Crosby
Glenn Munshaw
Jeff Smink
Cathy Dodd
Greg Gumbs
Chris Hartwick
John Inks
Uwe Peregi
Paul Tayler
Jonas Wästberg
– Morrisville, Pa.-based specialty chemical maker Gelest Inc. has appointed Barry Arkles as CEO. – McHenry, Ill.-based specialty colourant and additive supplier Chroma Color Corp. has named Mike Crosby as vice president and general manager of its Epolin business unit, Glenn Munshaw as vice president of operations, and Jeff Smink as vice president of technology. – Avon Lake, Ohio-based thermoplastic resin supplier Avient Corp. has named Cathy Dodd as senior vice president, president of distribution. – Charlotte, N.C.-based factory automation supplier Bosch Rexroth North America has appointed Greg Gumbs as president and CEO effective Dec. 31. He replaces Paul Cooke, who is retiring. – Mississauga, Ont.-based pipe extruder Uponer Canada has named Chris Hartwick as general manager. – Engineered thermoplastics and custom packaging solutions provider Spartech LLC, headquartered in Avon, Ohio, has appointed John Inks as CEO. – Bartlett, Ill.-based welding systems maker Herrmann Ultrasonics Inc. has named Uwe Peregi as president. – Thermoplastics resin distributor Nexeo Plastics, headquartered in The Woodlands, Tex., has named Paul Tayler as CEO. – Bredaryd, Sweden-based recycling equipment manufacturer Rapid Granulator Group has named Jonas Wästberg as CEO. www.canplastics.com
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extrusion
The ins and outs of extruding
RECYCLED PLASTICS Many extrusion shops want to use recycled plastics these days, but there are issues involved, including material variability, contamination, and moisture. So it’s a good thing that OEMs are offering systems tailored to overcome these challenges.
By Mark Stephen, editor
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Photo: stock.adobe.com
M
oC h ot
oney never sleeps, the saying goes, and neither does concern for the environment, even during a global pandemic. For plastics processors, this means continued – even growing – interest in plastics recycling so that customers can market their products as environmentally-friendly, especially during the V-shaped economic recovery we all hope is coming. And this interest definitely carries over into extrusion shops. But the catch
re d
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ude
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is, extrusion machines must overcome challenges particular to using recycled materials, which means primarily contamination, degassing, moisture, and corrosion. The good news is, a growing number of extruders are being designed to handle post-consumer materials.
KEY QUESTION
“We’re seeing a lot of interest from all kinds of companies in recycling applications, even from virgin resin manu-
facturers,” said Monika Gneuss, vice president of sales and marketing manager with Gneuss Inc. “Some projects have slowed somewhat since the pandemic started, but many are still going forward full steam.” Since processors that use recycled plastics have special needs that require customization, it’s important for OEMs to know this in advance before recommending an extrusion solution. “Regardless of who the customer is, November 2020 Canadian Plastics
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we need to know exactly what they want to run, whether it’s recycled materials or traditional resins,” said Kevin Slusarz, director of process technology with US Extruders. “If they want to run a range, as with custom profile houses, we’ll make our solution more generic so that it runs a breadth of materials and/or recommend multiple screws, or different screws, for various groups of resins.” According to Adam Dreiblatt, director of process technology for CPM Extrusion Group, when it comes to corotating twin-screw extruders, there are some requirements for processing recycled resins that are more difficult to implement after the line has been installed. “Extending machine length to add venting capacity, or moving side feeders or changing feed positions are examples,” he said.
A big question at the outset – perhaps the biggest – is, what’s the source of the recycled material? “The big distinction we want to know is whether the extrusion customer is buying treated recycled material from a vendor or using their own in-house regrind,” Kevin Slusarz said. “Typically, recycled material is prepared in the reprocessing extruder: it gets washed, size reduced, extruded, vented, pelletized, and then sold to the open market, whereas customers that are using their own recycled material may or may not be pelletizing it.” For this latter category, Slusarz continued, there are options. “We might recommend upgrading the materials of construction – upgrading the barrel to an Xaloy X-800 or the equivalent, which is for abrasion resistance; and using Colmonoy 83 to protect the flight,
which is a nickel-chromium-tungstenboron matrix alloy containing chromium carbides with the addition of extremely hard tungsten carbide particles,” he said.
UNEQUAL PLAYING FIELD
A key point is that – whatever the laws or other legal mandates say – all recycled material is not recreated equal. “There’s a difference between postindustrial and post-consumer recycle,” said extrusion consultant Alan Griff, head of consulting firm Griffex. “Known post-industrial should have more value if consistent in viscosity as well as appearance. Purchase should have such specifications, which is easy to say, but also easy to forget in the face of a lower price.” Which means that extrusion shops should test incoming materials (and
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extrusion
share the results with OEMs) so they can see problems ahead and deal with them. “Each recycled stream needs to be evaluated for content of contamination, bulk density, shape, and material flow,” said Paul Godwin, president and CEO of battenfeld-cincinnati USA. “The final design of the processing and auxiliary equipment can then be selected to best suit the material.” Contamination consisting of metal, labels, paper, and foil might be the most common problem when extruding recycled materials, but there’s other types of contamination to be aware of, as well. “There’s also the issue of polymer contamination – for example, if there’s nylon in PP, the nylon has a higher melting point, so it will end up contaminating the screens quicker,” said Dean Elliott, technical processing manager with Entek Extruders. Which
is why, depending on the level of contamination, specialized screen changers with large surface areas designed for recycling are sometimes necessary, OEMs say. And for recycled material with a high potential for contamination, the right screening becomes critical. “Fortunately, there are a lot of options, ranging from no screening at all — clean feed, less critical end-use — to very fine screening, a way of adding more value to the material,” said Alan Griff. “The finer the screening, the faster the screens will clog and the more often they’ll need to be changed.” The heat stability and viscosity of the plastic also matter, Griff continued. “If the plastic can take more heat, the screens can be left in longer,” he said. “Greater contamination buildup increases back pressure in the extruder
and draws more power from the motor, which may generate more frictional heat in the screw.” Recycled resin with a high level of contamination requires significant melt filtration to produce an acceptable compounded product. “If the extrusion line isn’t equipped with a suitable screen changer, the frequency of changing screens can become unwieldy,” Adam Dreiblatt said. “Specialized high-area screen changers and continuous filters have been designed specifically for heavily contaminated recycling applications.” And while the choices of different types of screen changers are quite extensive, this will only get you so far – after which the possibility of using different materials of construction again enters the equation. “Screen changers certainly play a very impor-
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tant role in recycling, but as they’re after the extruder, they won’t ‘protect’ the extruder or mitigate processing issues,” said Monika Gneuss. “Extruders will certainly wear faster when processing recycled materials with solid contamination, so one design change might be using different materials of construction, for example bimetallic barrels. With our MRS extruder, the whole multiple screw section is vented to make for very efficient devolatilization.”
CONSISTENTLY INCONSISTENT
A lack of material consistency is another characteristic of some recycled resins, especially when extrusion shops buy recycled plastics from a variety of sources as opposed to reusing their own material through a closedloop recycling system. Since the goal is to produce the same properties, one way to achieve this is if processors of recycled plastics combine material from numerous lots prior to processing to improve consistency, although a downside is that this step requires significant floor space to store resin and large blenders to combine it. According to Paul Godwin, one way to overcome lot-to-lot variation in melt flow is to run a controlled blend of differing melt index materials to nominalize the variation to the extrusion process. “With large swings in melt index the process conditions may need to be adjusted to obtain a quality extrudate,” he said. Other options are also available. “Some customers that run recycled resins change dies in order to compensate for the change in viscosity,” Kevin Slusarz said. Changes in operating conditions such as screw speed and temperature settings can also homogenize the mix. Gneuss’ MRS extruder – which was developed specifically for recycling applications involving PET but can also be used with other materials – is said to be a good fit for this type of application. “Our MRS extruder offers excellent distributive mixing properties that help homogenizing viscosity variations not
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A VALUABLE DIGRESSION ON MELT SCREENS… As our main article makes clear, recycled resins have a high potential for contamination, which means that melt screening – which is important enough when processing traditional resins – now becomes critical. And as extrusion expert Alan Griff explains, there’s a range of options available for screening recycled materials, as well as several points to keep in mind. “Some screeners continuously sweep the screen and remove contaminants; others have two parallel paths so one can stay in use while the other is changed; some are completely manual while others have hydraulic or pneumatic assist or quick change; and some run a continuous strip of screen or ring of screens that move around so resistance (thus back pressure) remains more or the less the same,” he said. “Screening also requires attention to screen material, weave (square, Dutch), wire thickness (gauge), mesh (wires per inch or centimeter), and use of a screen pack (a sandwich of several screens of different or the same mesh and wire sizes).”
just for PET but also when recycling polyolefins,” said Monika Gneuss. Achieving homogeneity is especially problematic for the compounder to produce consistent properties when adding various lots of recycled resins – a problem made worse nowadays as lot sizes have become smaller with just-in-time operations. “The compounding parameters to reach a specified property will be different for resins having higher or lower melt flow; running all at the same processing conditions will then result in compounds having a wider range of properties, both within-lot as well as lot-to-lot,” said Adam Dreiblatt. “In order to produce consistent quality while maximizing the percentage of recycled resin, the variability needs to be reduced on one end or the other. This means preblending large lots of resin or large lots of compounded product, either of which adds cost.”
THE NEED TO VENT
To deal with moisture and volatiles in the melt, meanwhile, compounding extruders used for recycled plastic can benefit from additional venting. Traditional extruders that handle traditional petroleum-based plastics that are being compounded with various additives usually have one vent; co-rotating twin-screw extruders offer the flexibility to add venting, making them good fits for running recycled materials. “For recycled polymers, it’s not uncommon to see two or three vents on the extruder,” said Dean Elliott. And if the
machine wasn’t initially configured for venting of a high percentage of volatiles, additional vents or different vent geometries can be added or installed. “These aren’t significant modifications but they do carry some capital cost,” Adam Dreiblatt said. Another option is to use vent stuffers, which push materials back into the extruder process section while allowing gases to escape. “Adding a vacuum vent stuffer to manage the additional volatile load for an existing vent has become very popular over the past few years with increasing use of recycled resin,” Dreiblatt said. In the end, because recycled plastics vary in size, form, bulk, quality, and consistency, making the right extrusion technology choices are critical to ensuring the best product quality. But it’s definitely doable, especially if you bring the OEM into the process at the beginning. CPL RESOURCE LIST battenfeld-cincinnati USA (McPherson, Kan.); www.battenfeld-cincinnati.com; 620-241-6843 CPM Extrusion Group (Traverse City, Mich.); www.centuryextrusion.com; 231-947-6400 Entek Extruders/Entek Manufacturing Inc. (Lebanon, Ore.); www.entek-mfg.com; 541-259-1068 Gneuss Inc. (Matthews, N.C.); www.gneuss.com; 704-841-7251 Griffex (El Cerrito, Calif.); www.griffex.com; 301-758-7788 US Extruders (Westerly, R.I.); www.us-extruders.com; 401-584-4710 www.canplastics.com
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recycling
THE BIG
THREE
OF CHEMICAL RECYCLING
In the quest to create virgin-quality regrind for packaging applications, the chemical recycling options of pyrolysis, solvent dissolution, and chemical depolymerization are leading the way.
By Mark Stephen, editor
Marina Vol/ Getty Images/iStockphoto
N
o matter what the human endeavour, there’s usually a “Holy Grail” at the end of it – something you want very much but that’s very hard to achieve. For climbers, it’s ascending Mount Everest; for golfers, it’s potting a hole-in-one. And so on. For the waste plastic packaging sector, this ultimate quest involves turning the waste back into truly virgin-quality recycled material for use as new packaging materials. The problem is, this leaves mechanical recycling – the standard method widely used today, involving sorting, washing, and extrusion to produce a pellet used as a secondary raw material – out in the cold, since it can’t produce a virgin-comparable product. Which is why traditional mechanical recycling typically downcycles into applications with less-exacting specifications than what the virgin materials were designed for. Chemical recycling offers an alternative. Also called advanced plastics recycling, the process converts post-use plastics to their original monomer forms so they can be remade into new plastic materials that are identical to
the originals. Primarily, three different types of chemical recycling are being developed for recycling packaging into virgin-quality polymers: pyrolysis, solvent dissolution, and chemical depolymerization. Each uses a different process and is suitable, or has been developed, for different polymers. Here’s how each of the Big Three works.
PYROLYSIS
Pyrolysis uses a thermal cracking process to convert plastic waste to an oil, which is often further purified and then used as feedstock in the production of base chemicals – for example, ethylene, which is used for polymer production. Although researchers are trying to develop technologies that accept all kinds of mixed waste, it’s likely these materials will have to be sorted and cleaned before they can undergo pyrolysis. Potentially, new virgin-quality polymer can be made from the resulting oil. The process is particularly relevant for PE because LDPE is so widely used in film. Mechanical recycling of film is challenging, however, and putting recycled content back into film is
considered to be very difficult. The pyrolysis method has sparked industry collaboration since the process produces base chemical products that can be used across multiple polymer segments. Even the by-products of pyrolysis are finding purpose, as seen in the collaboration between polymer supplier Ineos Styrolution and Brantford, Ont.-based GreenMantra Technologies. GreenMantra’s approach converts PS waste directly into marketable products, and Ineos is working to purify GreenMantra’s byproduct stream to recover styrene monomer for polymerization into recycled PS resin.
SOLVENT DISSOLUTION
Differing from pyrolysis in that the polymer isn’t broken down, solvent dissolution involves selective extraction of polymers using solvents. A relatively pure feedstock, such as washed PP from margarine tubs and other packaging, is dissolved in a solvent. Once dissolved, the process can mechanically and chemically separate colourants, additives, and contaminants before finally separating the original polymer November 2020 Canadian Plastics
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recycling
from the solvent. The end-product then becomes a cleaned polymer that can be used as new raw material resin again. The process has pros and cons. A major benefit is that it can be used to create food grade recycled rPP, and can also be used to recover PE or PP from multi-layer, non-recyclable packaging. On the down side, solvents can be expensive, and the more non-target material present, the higher the cost of recycling owing to potential solvent loss; and the process is considered to be technically challenging to develop and operate. In Canada, Montreal-based Polystyvert Inc. uses solvent dissolution in a three-step system: first, the PS is placed in contact with an essential oil that dissolves it in seconds; second, the mixture of dissolved PS and essential oil is purified and the PS separated and removed; third, the final recycled product is pelletized, while the essen-
tial oil is also recycled for the next dissolution cycle.
CHEMICAL DEPOLYMERIZATION
Chemical depolymerization provides the ability to break down a polymer into either monomers or intermediates – the individual building-block molecules – for what proponents say is unparalleled separation, purification, and recovery of plastic materials. Similar to solvent recycling, the process removes additives and colourants while contamination is filtered out. The resulting product is a plastic raw material (monomer) that’s nearly identical to material sourced from traditional fossil fuels, which means the depolymerized material could then be used for food contact applications. The process is being developed primarily for PET, which can be broken down using either water (hydrolysis) or monoethylene glycol (glycolysis). And
since PET is used almost exclusively in fibre and packaging, chemical depolymerization offers significant recycling advantages. Researchers say that PE and PP can’t be broken down in such a controlled way since the polymer chain doesn’t have any distinctive “cutting points.” Challenges to chemical depolymerization include the need to prepare the feedstock to remove as much contamination as possible; and cost, as the process is more expensive than generic mechanical processes because of adding the chemical step to collection, sorting, washing, and shredding operations. One of the companies embracing depolymerization is Ineos Styrolution, which is partnering with green technology supplier Agilyx to build a new facility near Chicago that will eventually recycle up to 100 tons of PS per day. CPL
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recycling
Calgary-based Nova Chemicals Corp. has announced a long-term agreement with Merlin Plastics Supply Inc., said to be Canada’s largest plastics recycler, that will see Nova offer PE resins containing post-consumer recyclate (PCR). The agreement marks Nova’s first foray into buying PCR and offering it for sale to its customers. Under the deal, Nova will provide Vancouver-based Merlin with financing for a multimillion-dollar project to expand its processing plant in Delta, B.C. The investment will enhance Merlin’s processing of PCR for food packaging applications, with commercial quantities expected to be available beginning in 2021. Nova will buy up to 30 million pounds of the PCR per year. Many of the world’s leading consumer brands have pledged to increase the amount of PCR content in plastic packaging to an average of 25 per cent by 2025, but today’s recycled PE is still mostly used in non-food applications such as detergent bottles and plastic lumber. Nova’s partnership with Merlin aims to change this by turning HDPE plastic recyclate into resin for use in everyday products, with
Inside Merlin’s Delta, B.C. plant.
Photo Credit: Nova Chemicals Corp.
NOVA AND MERLIN PLASTICS PARTNER TO USE CURBSIDE RECYCLING FOR CONSUMER PACKAGING
an emphasis on food packaging applications. “We expect demand for PCR to increase tenfold in the next five years based on brand owner sustainability commitments,” said Greg DeKunder, Nova’s vice president, marketing. “We’re excited to continue successfully working with our customers on application development as we enter the PCR market.” The collaboration with Merlin is one of several that Nova is pursuing to build its PCR offerings, with commercial quantities beginning in the next year. Ultimately, DeKunder said, Nova plans to offer 100 per cent PCR PE and PCR blended with its virgin grades, including LDPE, LLDPE, and HDPE. CPL
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raw materials handling
THE RIGHT WAY TO
kyrychukvitaliy - stock.adobe.com
MANAGE REGRIND
Does your plastics processing plant use regrind or recycled material in a variety of resin types, colours, and recipes? If so, setting up the right system to track and manage it all can save you inventory, production time, and money. By Mark Stephen, editor
taking the time to separate scrap or regrind by colour and/or quality helps secure the best price.” For the remaining companies that use or produce regrind, here’s an example of what you don’t want to have happen: adding the wrong colour regrind to a recipe and having to scrap the entire job. The good news is, regrind and recycled material tracking can be improved significantly by asking some basic questions – how much of it do you use, what are the material types and colours, and how complex are your recipes? – and implementing a few basic steps based on the
SHOULD YOU OR SHOULDN’T YOU?
Tracking and managing regrind requires time and effort, and one school of thought says that not every company needs to do it. But if it seems like plastic processors that rely on a single recipe or two and/or companies such as medical parts makers and food packaging suppliers that use virgin materials exclusively don’t have a reason to track regrind, think again. “Even if you don’t use it back in production, it’s always a good idea to track rejected parts or wasted material as an indicator of material efficiency,” said Rick Dunne, director of sales with CyFrame International Enterprises Inc. “Plus, it can be sold to a recycler or third-party reseller, and
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ERP systems can be an effective tool to manage scrap generated inprocess. This program from CyFrame International converts rejected finished products into regrind inventory.
Photo Credit: CyFrame International Enterprises Inc.
L
ife is what you make it. Without getting too philosophical, regrind for plastics processors is a bit similar: depending on how they use it or don’t use it, regrind can be either an asset or a liability – a cost-saving recipe ingredient and added revenue source, or scrap material just gathering dust in bins. If the first scenario sounds more appealing to you, or if you’re already managing your regrind but want to get a better handle on the process, there’s no shortage of options, from simple spreadsheets and colour-coded storage bins to sophisticated, plant-wide enterprise resource planning (ERP) software, plus a range of auxiliary equipment that can help.
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raw materials handling
answers. “If you’re using minimal variations of material, separating that material into bins or zones and labelling each with a corresponding coloured placard helps avoid contamination and provides better value for those selling it,” Dunne said. “We recommend segregating regrind into three classifications: green, yellow, and red.” Green indicates very good quality regrind, Dunne continued, while yellow indicates lower quality or what had been produced using green regrind, and they can both be used for production with alternate recipes with green and yellow used at different percentages in the recipe to minimize production defects and maintain a normal production speed. “And red is either what’s sold to recyclers or what can be re-extruded with lost additives and filters to pelletize it in order to take out any contamination and add ingredients to generate near virgin-quality raw material,” he said. Dunne also suggests using other low-tech strategies such as declaring all production rejects as they’re generated, grouping scrap by raw material type and colour, separating reusable from contaminated scrap, and coding regrind with a different SKU than virgin material to identify what type of regrind is being dealt with.
tem is likely the best option. “A plastics-specific ERP solution can offer different tools to easily record rejected products or wasted material which will be turned into regrind,” said Rick Dunne. “When it comes to managing regrind, these systems provide detailed and current information about a specific customer or job and that custom-
A RANGE OF SOLUTIONS
At the top end of low-tech solutions, some processors have turned to spreadsheets, which industry experts say are well-suited for most simple situations involving one or two recipes. But this approach has obvious limits. “Manually cataloguing regrind material is time-consuming, costly, and inexact,” said Manuel Riano, CyFrame’s director of implementation. “Usually, any accumulated information is almost instantly out of date, since without access to real-time information, processors are never quite sure they have the right amount and type of regrind in stock to run the job effectively.” For shops that place great importance on regrind tracking and that utilize multiple recipes, an ERP sys-
er’s unique requirements for the percentage of acceptable regrind or recycled material that goes into the mix. And for those selling regrind, ERP systems tell exactly how much of the scrap/remnants are reusable, along with the quantity and value of regrind on hand.” ERP is a big investment, the experts
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note, and one size definitely doesn’t fit all, so it’s crucial for each processor to get the right system by determining their needs up front. “In addition to volume, the origin of the material must be determined, tracked, and made instantly accessible,” said Manuel Riano. “Also, virgin resins may include additives such as colour, fillers, lubricants, and stabilizers that might require a secondary drying step. Not all ERP systems will have the complete functionality that processors using regrind and recycled materials will require.” If you don’t have or don’t want a full-blown ERP system, but you still want to track usage of regrind and other materials, Conair Group offers a system that uses SQL Server (structured query language) technology. “The software is readily available, or even free, and is commonly used in finance, inventory control, and other applications in many companies, so many processors are already familiar with it,” said Alan Landers, Conair’s blending product manager. “The system can be programmed to log all the materials being blended by resin type, recipe number, order number or any other factor, and then aggregates the data from all connected blenders so that users can quickly generate structured reports that tell them how much regrind was used by each blender or by all blenders plant-wide, today, last week, or over any period of time.”
MOVING IT AROUND
Regrind can be exotic, but it’s also just another ingredient in your material mix that needs to be stored, conveyed, and metered. And there are probably more auxiliary products available now to perform these jobs than ever. Introduced last year, the GenesysNext drying system from Piovan is designed to work with recycled material, recycled PET in particular. “The dryer can automatically manage the drying process by setting all the critical parameters: from the process air flow rate to its dew point value, from the residence time to the temperature, maintaining optimum operating conditions even as hourly production and initial temperature and
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Photo Credit: Maguire Products Inc.
raw materials handling
The 1200 series blenders from Maguire Products are said to offer expanded capacity for the use of regrind and post-consumer resin.
humidity conditions of the plastic granulate vary,” the company said. Officials with Maguire Products Inc. said the company’s new 1200 series blenders, which can dispense up to 12 ingredients, offer expanded capacity for recycled and virgin-content production, making it a good option for processors looking to use more regrind and post-consumer resin along with virgin polymers. Among the ingredients the 1200 series blenders can dispense are pellets, powders, liquids, and poorly flowing ingredients like regrind, flake, wood flour, and talc filler. Each ingredient hopper has a dispensing device designed for a material in a specific form, the company said. And according to Brian Davis, general manager of Maguire Products Canada Inc., Maguire has other technologies that can track regrind usage, including feeders, totalizers, weigh dispensers, and the company’s Ultra resin dryers. Wittmann Battenfeld’s new Ingrinder solution, designed for smaller injection molding machine models from the EcoPower and SmartPower series, removes the sprue directly during the injection process and passes it through an ejection chute integrated in the machine frame to a built-in and specially modified G-Max 9 granulator; a Wittmann vacuum conveyor then transports the
recycled material via a two-component switch to the machine’s material hopper – the two-component switch enables alternating loading of virgin material and regrind in pre-set recipes that mix the materials before releasing them into the material hopper. Conair’s TrueBlend blenders are said to offer a unique approach to controlling the metering of material, especially regrind. “In contrast with most other blender controls, the TrueBlend SB4 control always meters regrind first and then adds natural, colour, and other additives to match the material recipe,” said Alan Landers. “This way, the regrind ratio remains constant. And if the supply of regrind fluctuates, the blender can compensate by adding more natural.” On the control side, the FlexTouch FTS control series from Novatec Inc. is said by the company to provide complete control in a fixed I/O package for evacuating regrind and conveying it to collection stations. “All grinder evacuation stations, recycle collection stations, pumps, and optional material line valves connect to a single enclosure via discrete wiring,” company officials said. In the end, as with everything in life, it’s important to focus on what matters. If regrind is one of those things, there are big benefits to implementing the right tracking strategy for CPL your unique situation. RESOURCE LIST Conair Group (Cranberry Township, Pa.); www.conairgroup.com; 724-584-5500 Dier International Plastics Inc. (Unionville, Ont.); www.dierinternational.com; 416-219-0509 Industries Laferriere (Mascouche, Que.); www.industrieslaferriere.ca; 450-477-8880 Turner Group Inc. (Seattle, Wash.); www.turnergroup.net; 206-769-3707 CyFrame International Enterprises Inc. (Saint-Laurent, Que.); www.cyframe.com; 514-693-0999 Maguire Products Canada Inc./Novatec Inc. (Vaughan, Ont.); www.maguire.com; 905-879-1100 Piovan Canada Ltd. (Mississauga, Ont.); www.piovan.com; 905-629-8822 Wittmann Battenfeld Canada Inc. (Richmond Hill, Ont.); www.wittmann-group.com; 905-887-5355 www.canplastics.com
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technology showcase
AUXILIARY EQUIPMENT
INJECTION MOLDING
New vacuum pump simplifies conveying
The new NVRBE vacuum pump from Maguire Products Inc. is designed to be easy to install, operate, and maintain, and to simplify conveying of raw materials from storage. The pump can be configured in “minicentral” systems with Maguire’s extremely compact LowPro receivers mounted on multiple blenders, and has user-friendly features that include a Clear-Vu dust collection bin that allows the operator to easily see when cleaning is required; a filter safety switch that minimizes dust contamination and which initiates an alarm and stops the blower if the filter becomes clogged; a pressure differential switch that acts as a clogged filter sensor, stopping the blower if the filter is clogged over 90 per cent; an air bypass valve that prolongs pump life and minimizes power usage by allowing the blower to keep running when no vacuum is called for; and quieter operation in comparison with positive displacement pumps. And like all Maguire systems, the NVRBE vacuum pump comes with a five-year warranty. Maguire Products Canada Inc. (Vaughan, Ont.); www.maguire.com; 905-879-1100
Digital service helps molders help themselves
Arburg GmbH has unveiled a new type of purchasing concept that enables customers to configure and order a new injection molding machine online. Called the arburgXworld digital portal, it comes in four free-of-charge packages. The first, Machine Center, provides machine specific data for a molder’s entire fleet of Arburg machines; users have easy, centralized access to production-relevant information and also documentation for machines built since 2017. The second, Service Center, simplifies communicating with Arburg for support or service; customers can open a service ticket, submit supporting information and photos, see ticket status, and access documented service history. Third, Shop gives molders access to spare parts catalogs, including exploded-view and 3D drawings and pricing and availability, and allows them to place
Mold Cleaners
Granulator keeps maintenance simple
Wittmann Battenfeld’s G-Max 13, the fourth model and second-smallest granulator in the product line, provides material throughputs of up to 77 pounds per hour and is designed for closed-loop recycling of sprues and runners from injection molding machines. The G-Max 13 features a cutting chamber measuring 9.7 inches by 11.2 inches, a 13-litre regrind bin, and an open rotor with three knives. Its motor output is three kW, and its belt drive has an automatic tensioning system. The granulator can process soft to medium-hard sprues and runners made of PP, PE, ABS, and PU. The machine is compact, energy-efficient, and features a material hopper that can be tilted for simple cleaning and maintenance. Tools are not needed to perform screen changes, and changing knives is easy. And the material screens of the G-Max 13 are available with screen perforation in different sizes: either 4 or 5 mm in diameter to ensure suitability for varying materials and throughputs. Wittmann Battenfeld Canada Inc. (Richmond Hill, Ont.); www.wittmann-group.com; 905-887-5355
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technology showcase
orders 24/7. Lastly, Self Service allows users to analyze machine errors themselves simply by entering a problem description or error code. Additional fee-based apps are also available which provide access to calculation tools and knowledge databases based on Arburg’s experience. Arburg Inc. (Rocky Hill, Conn.); www.arburg.us; 860-667-6500 D Cube (Montreal); www.dcube.ca; 514-831-5623
Preform line allows side entry of molds
The new Netstal PET Line from Netstal, a brand of the KraussMaffei Group, allows entry of molds from the side and has been optimized to process PET with recycled content of up to 100 per cent. Machines in the series feature a new screw design and can accommodate as many as four laterally positioned postmold cooling stations. The machines are made to ensure a homogeneous and consistent melt quality, minimal drop in intrinsic viscosity, and gentle material feed. The machines’ fully electric clamping units have a fivepoint, dual-toggle lever. The units also offer Netstal’s Smart Operation features, with four keys for intuitive operations. Clear information and colour indications enable simple, fast, and reliable process control. Under the Smart Operation principle, operators can start preform production using just two keys. The Netstal PET-Line, the first featuring the ninth generation of Netstal’s aXos controllers, has been launched with a 450-ton machine; other models are on the way. Krauss-Maffei Corp. (Florence, Ky.); www.netstal.com; 859-283-0200
EXTRUSION
Electro-mechanical clamp improves safety The new AutoGrip extrusion clamp with electro-mechanical actuation from Graham Engineering’s American Kuhne product line is designed to offer safer and simpler operation than manual devices while also providing more repeatable clamping forces. The power clamp reduces downtime in installations with frequent screw, breaker plate, or tooling changes; and reduces the risk of injury or burns involved in manually releasing and tightening clamps during changeovers. The AutoGrip clamp is remotely controlled by a two-hand push-
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button controller for user safety and convenience. The drive motor and gear box are mounted above the clamp, protecting them from melt residue and making them easy to access for maintenance. The AutoGrip power clamp is available for extruder sizes of 3.5 to six inches, or 90 to 150 mm. In addition to applications involving new extruders, it can be retrofitted on many existing installations. Graham Engineering (York, Pa.); www.grahamengineering.com; 717-848-3755
Thermal blankets for any extruder style
Shannon Global Energy Solutions recently introduced its new model MT850SSi thermal blanket for extrusion, designed to cut down on energy, retain radiant heat, and boost safety. Well-suited for use on any style extruder as well as extruder barrels and heads, model MT850SSi thermal blankets are removable and reusable, so maintenance workers and equipment operators can easily install and reinstall them after removing them from a component to adjust or service machinery. The blankets create a thermal barrier and double as a safety feature for employees, while achieving thermal efficiency with a maximum thermal capacity of 455˚ C or 850˚ F. The model MT850SSi thermal blankets come with an I.D. tag to describe location and the component to which each belongs. Shannon also includes a hot surface label to warn operators of high temperatures. Shannon stores its insulation blanket production drawings on a CAD drawing system, so customers can reorder blankets or request replacement parts for up to ten years. Shannon Global Energy Solutions (North Tonawanda, N.Y.); www.shannonglobalenergy.com; 716-693-7954
ROTATIONAL MOLDING
Next-generation PE resins boost productivity, part performance Nova Chemicals Corp. has introduced two new PE resins with fast sintering properties to help rotational molders improve productivity and part performance. Novapol TRx0338-U and Novapol TRx0535-U hexene comonomer resins can reduce cycle times by up to 30 per cent, and provide broader processing windows that allow manufacturers to run different part sizes and thicknesses on the same arm under identical conditions www.canplastics.com
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technology showcase
without sacrificing part quality Processability characteristics support consolidation of traditional 3.5 and 5.0 melt index or 5.0 and 7.0 melt index grades to a single resin. With a melt index of 3.5 and a density of 0.938, Novapol TRx0338 resin is ideal for small tanks, intermediate bulk containers, roll-out waste carts, and material handling containers for laundry and dry bulk goods. The 5.0 melt index, 0.935 density Novapol TRx 0535 resin is well-suited for toys, recreational vehicle components, kayaks and stand-up paddleboards, and custom parts. Nova Chemicals Corp. (Calgary); www.novachem.com; 403-750-3600
MOLD COMPONENTS
Expanded bar locks, including metric sizes
Progressive Components has expanded its Z-series bar locks for alignment of large molds and multi-plate sequencing tools. Bar locks were first introduced in 2014, and what began as four bars now has expanded to eight, and what started as eight guides now includes 20. Additionally, a metric series has also been added, and these latest additions now cover the range for standard plate thicknesses, so that a mold will close in perfect alignment for the life of the program. In addition, Progressive now provides mold-ready, custom lengths, as well as corner radii for when a lock pocket isn’t machined through the full plate width. The company has optimized the process so that it can ship an altered length with pocket radii for only the cost of about one shop hour. Progressive Components (Wauconda, Ill.); www.procomps.com; 847-487-1000
advertising index Advertiser
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Website
Absolute Haitian
11
www.absolutehaitian.com
Chillers Inc.
10
www.chillersinc.com
IMS
19
www.ims.com
Lorenz Conveying Products
IFC
www.lorenzproducts.com
Maguire Products
OBC
www.maguirecanada.com
Plastic Process Equipment Inc.
23
www.ppe.com
Sepro Canada
14
www.sepro-group.ca
Shuman Plastics DynaPurge
5
www.dynapurge.com
Struktol Canada Ltd.
15
www.4struktol.com
Temperature Corporation
21
www.temperaturecorporation.com
Vecoplan LLC
17
www.vecoplanllc.com
MATERIALS High hydrolysis resistance with plenty of extras The new Pocan XHR hydrolysis-stabilized PBT compounds from Lanxess AG are designed to offer superior resistance to hydrolytic degradation in very hot and humid conditions. In testing based on the stringent SAE/USCAR2 Rev. 6 long-term hydrolysis tests of the U.S. Society of Automotive Engineers, the compounds reached Class 4 or Class 5 – the top two ratings. Lanxess has given the Pocan XHR series elongation at break of up to 4.7 per cent (ISO 527-1/-2) because high elongation at break counteracts the formation of stress cracks. The melt viscosity of all Pocan XHR variants also remains constant for a long time at the injection molding temperatures customary for PBT, which means the materials can be injection molded stably within a wide processing window. Lanxess Canada (Toronto); www.lanxess.ca; 647-499-7559
classified
SALES MANAGER POSITION PROCESS COOLING EQUIPMENT AND SYSTEMS
Temperature Corporation is an established, manufacturer of chillers and complete chilling systems. We are currently looking for someone to join our team as Sales Manager – Process Cooling Equipment and Systems who will have responsibility for the following: • Sales of all Process Cooling Equipment and Systems • Establishing a network of agents across Canada with major focus in Ontario • Working out of Markham office, position will also involve some travel to agent/customer sites to oversee and optimize sales (80% of travel in Ontario, primarily in the Toronto and GTA areas) The successful candidate will have: • Knowledge of the Process Cooling Industry (some training will be provided). • Knowledge of refrigeration pertaining to chillers and pumping systems. • A highly motivated team player with a strong focus on customer satisfaction. • Strong communication skills to work with staff and client groups as required. Temperature Corporation offers a comprehensive benefits package including, dental, medical and life insurance. We look forward to hearing from you and interested candidates should forward their resume to
linda.tandemchillers@gmail.com We thank all candidates for their interest in Temperature Corporation. Only candidates selected for an interview will be contacted.
November 2020 Canadian Plastics
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technical tips
The importance of mold cooling By Philip M. Burger, Burger & Brown
M
olding is a complex business and from a technical perspective there’s a lot to know, from materials science and the workings of a molding press to hydraulics and electrical controls. But I’d argue that understanding mold cooling is one of the most important things. A slight difference in cooling conditions can add or subtract seconds from the molding cycle, which ultimately can mean the difference between success and failure for a mold shop. Critical dimensions, surface finish, and part warpage are all affected by cooling conditions. Which is why it’s so ironic that mold cooling is so often neglected in molding shops. We have all sorts of “geewhiz” technology for monitoring and controlling nearly everything but mold cooling. Like most things, there’s more to know about the finer points of mold cooling and heat transfer than most of us care to learn. But this column will focus on some of the simple, common sense things to know on this subject that can help you gain a better understanding of mold cooling and be helpful in your molding efforts. Let’s start with some engineering basics. Most of you have heard something about turbulent flow and that it’s good for cooling. But what is it, exactly, and how does it help? Turbulent flow begins when the velocity of fluid in a channel increases to a critical level. Above this critical velocity, vigorous internal mixing of the fluid occurs as it flows. This improves heat transfer by mixing warmer fluid near the wall of the cooling passage with the relatively cooler interior fluid. The precise velocity for turbulent flow depends on several variables, including the cooling
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passage geometry, fluid viscosity, and roughness of the pipe walls. The formula for a ratio known as Reynolds number includes these variables, and a Reynolds number greater than 4,000 denotes turbulent flow. Table 1 at bottom shows some values for normal mold cooling situations with water as the fluid. Having said this, I can tell you that in some cases turbulent flow doesn’t matter too much, and in other cases it matters a lot. In one example, the cycle time for a coffee mug with a wall thickness of 0.200 inches was very poor. The molder wanted to improve the cooling in the mold cores with the goal of achieving a substantial cycle improvement, and spent a significant sum making cooling “improvements.” When the mold was sampled, the molder was surprised to learn that the cycle was about the same as before. What was going on? The best cooling system in the world won’t take away heat any faster than the molded part will give it up. Most unfilled resins transfer heat at a rate 1/10 to 1/25 that of steel. The outer walls of a thick part insulate the mold from the heat trapped in the centre of the part. The message here is that for very thick parts, the cooling system will have relatively little effect on cycle
time, whereas thin parts give up their internal heat quickly because of the thin walls and typically run on a fast cycle. These factors combine to greatly increase the demands on the cooling system, so good cooling performance requires well-placed passages in the mold as well as greater flow rates to carry away the heat. Thus, it’s generally true that if the molded parts will give up their heat, it’s worthwhile to use higher cooling flow rates. And it’s also true that the faster the flow rate, the more total heat you remove, even though the change in the temperature of the water flowing through the mold is very slight. Intuition may suggest that the water would pick up more heat at a slower flow rate, but it won’t. Although the temperature of the water increases more at a slower flow rate, total heat removed does not. CPL Philip M. Burger, P.E., founded Burger & Brown Engineering Inc. in 1978 and served as president until 2005. Based in Grandview, Mo., Burger & Brown manufactures engineered products related to mold cooling and in-mold sensing. Burger currently works parttime for the firm and has most recently developed an educational program called Scientific Cooling that was launched in October 2013. Visit www. smartflow-usa.com.
Table 1. Approximate flow rate needed to produce turbulent flow* in drilled passages Pipe size
ID of drilled passage
Min. flow rate for turbulent flow (gal/min)
1/16 NPT
0.250
1/4- drill
0.33
1/8 NPT
0.339
R drill
0.44
1/4 NPT
0.438
7/16- drill
0.55
3/8 NPT
0.593
19/32- drill
0.74
1/2 NPT
0.719
23/32- drill
0.90
* Based on Reynolds number of 4,000
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2020-10-26 12:44 PM
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