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(c) Chomarat
09.10.2019

Chomarat fabrics at the KraussMaffei booth during K Messe 2019

Chomarat Group’s composite reinforcements will be featured at the KraussMaffei stand during the next K Messe in Düsseldorf. Chomarat has created a glass reinforcement adapted to the mass production of automotive parts, helping to lighten leaf springs by 60% compared to metal.

Automotive: Producing 60% lighter leaf springs for car's underbody
The new leaf springs made of composites are 60% lighter than their pendants made of steel thanks to KraussMaffei process and the involvement of a network of partners, including Chomarat with G-PLY™ glass reinforcement. Their strength can be deliberately increased in sections where it is required and the corrosion resistance offers further added value.

Chomarat Group’s composite reinforcements will be featured at the KraussMaffei stand during the next K Messe in Düsseldorf. Chomarat has created a glass reinforcement adapted to the mass production of automotive parts, helping to lighten leaf springs by 60% compared to metal.

Automotive: Producing 60% lighter leaf springs for car's underbody
The new leaf springs made of composites are 60% lighter than their pendants made of steel thanks to KraussMaffei process and the involvement of a network of partners, including Chomarat with G-PLY™ glass reinforcement. Their strength can be deliberately increased in sections where it is required and the corrosion resistance offers further added value.

“We created the fabrics, when Engenuity developed the component, Huntsman supplied the matrix system made of epoxy resin, Johns Manville supplied the glass fibers, Schmidt & Heinzmann manufactured the preforms, Alpex designed the RTM mold and Hufschmied (Bobingen, Germany) took charge of post-mold processing of the component by milling. KraussMaffei has taken over the project management for Hengrui and coordinates the project with the partners.” Francisco De Oliveira at Chomarat explains.

More information:
CHOMARAT K 2019
Source:

AGENCE APOCOPE

23.09.2019

Tape inserts offer big potential for injection molding parts

Market and technology analysis confirms big potential for tape inserts in the injection molding process. Following the finalization of a major consortial project led by the Aachen Center for Integrative Lightweight Production (AZL) and the Institute for Plastics Processing at RWTH Aachen University (IKV), the result is clear: tape inserts offer enormous potential for injection molding parts. For suitable components, product costs and component properties can be positively influenced.

In cooperation with 20 industrial partners, the two renowned Aachen research institutes AZL and IKV carried out a detailed analysis of tape inserts in injection molded components over a period of eight months. The tapes, which are a few tenths of a millimeter thick, are continuous fibers, typically made of glass or carbon, completely impregnated and embedded in a thermoplastic matrix. The tapes can be precisely aligned to the loads in a component and are used primarily in high-performance applications with the aim of weight reduction. The aim of the conducted analysis was the identification of potential applications and the estimation of a wider range of applications.

Market and technology analysis confirms big potential for tape inserts in the injection molding process. Following the finalization of a major consortial project led by the Aachen Center for Integrative Lightweight Production (AZL) and the Institute for Plastics Processing at RWTH Aachen University (IKV), the result is clear: tape inserts offer enormous potential for injection molding parts. For suitable components, product costs and component properties can be positively influenced.

In cooperation with 20 industrial partners, the two renowned Aachen research institutes AZL and IKV carried out a detailed analysis of tape inserts in injection molded components over a period of eight months. The tapes, which are a few tenths of a millimeter thick, are continuous fibers, typically made of glass or carbon, completely impregnated and embedded in a thermoplastic matrix. The tapes can be precisely aligned to the loads in a component and are used primarily in high-performance applications with the aim of weight reduction. The aim of the conducted analysis was the identification of potential applications and the estimation of a wider range of applications.

The project was divided into several phases: Phase I was used to identify the current status. In 20 interviews with representative companies of the injection molding industry, the researchers gathered why tape inserts have rarely been taken into account so far, when defining the material concepts to be analyzed. The lack of information about the material class, the procedure and tools for the development process and the necessary production technologies were cited as major challenges. This is where the consortium will take action and provide comprehensive information during the “Technology Information Day” on the extensively prepared state of the art and the high degree of maturity of the supply chain. Based on the status quo, they developed a methodology for analyzing the technological and economic potential of tape inserts in injection molding applications.

Both the previous results and the planned follow-up projects are the subject of the “Technology Information Day" at K 2019, to which the companies involved in the study, the AZL and IKV, invite all companies along the value chain, from raw material manufacturers to injection molders to OEMs. (Date: 18th October 2019, 10:00 am to 1:30 pm, Trade Fair Düsseldorf CCD South, Room 002).

The consortium, amongst others consisting of Asahi Kasei Europe GmbH, BASF SE, Borealis AG, BÜFA Thermoplastic Composites GmbH & Co. KG, ENGEL AUSTRIA GmbH, Huesker Synthetic GmbH, LG Hausys R&D Center, Mitsui Chemicals, Nippon Electric Glass, Polyscope Polymers BV, POLYTEC GROUP, Simcon kunststofftechnische Software GmbH, SABIC and Toray International Europe GmbH, is inviting to the “Technology Information Day” at K 2019. The goal is to inform about the technology and to identify topics for future collaboration.

Source:

AZL Aachen GmbH

Mit hoher Schweißnahtfestigkeit und Langzeit-Temperaturbeständigkeit bis 230°C bietet Vydyne® XHT die richtigen Leistungseigenschaften für Bauteile im Motorraum, wie integrierte Lufteinlassverteiler. (c) Ascend Performance Materials APMPR038
Mit hoher Schweißnahtfestigkeit und Langzeit-Temperaturbeständigkeit bis 230°C bietet Vydyne® XHT die richtigen Leistungseigenschaften für Bauteile im Motorraum, wie integrierte Lufteinlassverteiler.
17.09.2019

Ascend stellt seine neuen Produkte Vydyne® XHT, LCPA und HTPA auf der K 2019 vor

HOUSTON – Ascend Performance Materials kündigte heute die Markteinführung mehrerer neuer Spezial-Polyamide auf der K 2019 an, um den wachsenden Anforderungen seiner Kunden zu begegnen. Unter den neuen Produkten befinden sich langkettigen Polyamide, Vydyne® XHT und neue hochtemperatur Polyamide.

Vydyne XHT, ein neues Portfolio aus hitzestabilisiertem Polyamid 66 und Copolymeren, ist widerstandsfähig gegenüber Langzeittemperaturen von bis zu 230°C. Durch eine Kombination aus speziellen Polymerverbindungen und einer mehrstufigen Wärmestabilisierungstechnologie erweitern XHT-Produkte die Grenzen der Temperaturbeständigkeit – ohne Einbußen bei der Verarbeitbarkeit, Beständigkeit und den mechanischen Eigenschaften, für die PA66 bekannt ist.

„Bei Motoren mit unterschiedlichen Leistungen und Drehmomenten, sind konstante Werte bei hohen Temperaturen für Anwendungen unter der Motorhaube unverzichtbar“, so Vikram Gopal, Senior Vice President für Technologie bei Ascend. „Vydyne XHT wurde von uns entwickelt, um unseren Kunden, die sich heute mit unzureichender Leistung in einem engen Betriebsbereich begnügen müssen, eine Alternative zu bieten.“

HOUSTON – Ascend Performance Materials kündigte heute die Markteinführung mehrerer neuer Spezial-Polyamide auf der K 2019 an, um den wachsenden Anforderungen seiner Kunden zu begegnen. Unter den neuen Produkten befinden sich langkettigen Polyamide, Vydyne® XHT und neue hochtemperatur Polyamide.

Vydyne XHT, ein neues Portfolio aus hitzestabilisiertem Polyamid 66 und Copolymeren, ist widerstandsfähig gegenüber Langzeittemperaturen von bis zu 230°C. Durch eine Kombination aus speziellen Polymerverbindungen und einer mehrstufigen Wärmestabilisierungstechnologie erweitern XHT-Produkte die Grenzen der Temperaturbeständigkeit – ohne Einbußen bei der Verarbeitbarkeit, Beständigkeit und den mechanischen Eigenschaften, für die PA66 bekannt ist.

„Bei Motoren mit unterschiedlichen Leistungen und Drehmomenten, sind konstante Werte bei hohen Temperaturen für Anwendungen unter der Motorhaube unverzichtbar“, so Vikram Gopal, Senior Vice President für Technologie bei Ascend. „Vydyne XHT wurde von uns entwickelt, um unseren Kunden, die sich heute mit unzureichender Leistung in einem engen Betriebsbereich begnügen müssen, eine Alternative zu bieten.“

Das Portfolio von Vydyne XHT umfasst vier glasgefüllte Typen, die sich optimal für anspruchsvolle Anwendungen im Automobilbereich wie Ladeluftkühler, Luftansaugkrümmer, Abgasrückführung und Resonatoren eignen. Alle XHT-Typen bieten ein ausgezeichnetes Fließverhalten und eignen sich als Regranulat, wodurch überschüssiges Material wiederaufbereitet und die Produktionseffizienz gesteigert werden kann.

Ascend stellt außerdem ein neues Produktportfolio aus den langkettigen Polyamiden PA610 und PA612 vor. Mit ihrer geringen Feuchtigkeitsaufnahme und einer hohen Beständigkeit gegenüber Chemikalien und UV-Strahlung eignen sich die langkettigen Polyamiden für eine Vielzahl von Anwendungen, darunter Monofilamente, Batterieabdichtungen, Kabelbinder, Automobilkühlsysteme, Kraftstoffanschlüsse sowie Sportartikel.

„Unsere Kunden sind Innovationstreiber und sehen steigende Anforderungen in ihren jeweiligen Branchen“, so Phil McDivitt, Präsident und Vorstandsvorsitzender bei Ascend. „Für größte Zuverlässigkeit, Funktionalität und Flexibilität bauen wir unsere vertikale Integration und starke Stellung im Bereich PA66 aus, um diese Innovationen zu ermöglichen“.

Zusätzlich werden die Aktivitäten des Unternehmens im Bereich der Hochtemperatur-Polyamide ausgebaut. Die neuen Produkte des HTPA-Portfolios von Ascend bieten als Metallersatz und für Hochtemperaturanwendungen im Automobilbereich höhere Festigkeit, Steifigkeit und Temperatur- und Chemikalienbeständigkeit.

Auf der vom 16. bis 23. Oktober in Düsseldorf stattfindenden K 2019 werden Vertriebs, als auch technische Expertern am Stand von Ascend (6A07) anwesend sein.

Borealis launches recycling technology Borcycle™ and new rPO compound at K 2019 © mtm plastics
25.06.2019

Borealis launches recycling technology Borcycle™ and new rPO compound at K 2019

  • Borealis’ EverMinds™ ambition moves industry one step closer to plastics circularity thanks to new recycling technology and improved recyclate
  • Borealis also announces significant material improvements to existing Purpolen® recyclate materials

Borealis, a leading provider of innovative solutions in the fields of polyolefins, base chemicals and fertilizers, announces the introduction of a new plastics recycling technology, Borcycle™. This evolving technology will be used to produce high-quality compounds made of recycled polyolefins (rPO) such as the newly-launched Borcycle™ MF1981SY, an rPO with over 80% recycled content intended for use in visible appliance parts. Borealis also announces a series of significant material improvements to existing recyclates in the established Purpolen™ brand portfolio. These market launches and product improvements are important technology advancements and thus accelerate the transformation to a circular economy of plastics. Borealis and its wholly-owned subsidiary, mtm plastics, will showcase the new Borcycle technology and recyclate innovations at the K 2019 in October.

  • Borealis’ EverMinds™ ambition moves industry one step closer to plastics circularity thanks to new recycling technology and improved recyclate
  • Borealis also announces significant material improvements to existing Purpolen® recyclate materials

Borealis, a leading provider of innovative solutions in the fields of polyolefins, base chemicals and fertilizers, announces the introduction of a new plastics recycling technology, Borcycle™. This evolving technology will be used to produce high-quality compounds made of recycled polyolefins (rPO) such as the newly-launched Borcycle™ MF1981SY, an rPO with over 80% recycled content intended for use in visible appliance parts. Borealis also announces a series of significant material improvements to existing recyclates in the established Purpolen™ brand portfolio. These market launches and product improvements are important technology advancements and thus accelerate the transformation to a circular economy of plastics. Borealis and its wholly-owned subsidiary, mtm plastics, will showcase the new Borcycle technology and recyclate innovations at the K 2019 in October.

Borealis is leading the industry by applying its Visioneering Philosophy™ to the development and implementation of novel polyolefins-based solutions that enable plastics reuse, recycling, and recovery, and by designing for circularity. These wide-ranging activities are gathered under the symbolic roof of EverMinds™, the Borealis platform dedicated to promoting a more circular mind-set in the industry. By capitalising on its profound expertise in virgin polyolefins and collaborating with value chain partners, Borealis keeps discovering new opportunities for business growth within the circular economy.

Advancing technology to bring about polyolefin circularity

The new technology, Borcycle, transforms polyolefin-based waste streams into recyclate material such as pellets. As a transformative technology, it complements the existing Borealis virgin polyolefins portfolio with a range of pioneering, circular solutions. It unites state-of-the-art technology with the profound Borealis polymer expertise gained over decades.

As a scalable and modular technology, Borcycle has been developed to meet growing market demand for high-quality recyclate. Leading appliance brand owners, for one, have pledged to increase the amount of recycled plastics in their goods. Yet until recently, producers have not been able to rely on a consistent supply of high-quality recyclate. The Borcycle technology will help address this challenge. Compounds made using the Borcycle technology deliver high performance, add value and offer versatility. Producers and brand owners in a range of industries will profit from the availability of high-quality recyclate that helps them meet environmental and regulatory challenges.

“Advancing technology is crucial if our aim is to implement value-creating solutions in the circular sphere,” claims Maurits van Tol, Borealis Senior Vice President, Innovation, Technology & Circular Economy Solutions. “‘Building tomorrow together’ means innovating, collaborating, focussing on the customer, and above all – taking action. The launch of our new recycling technology Borcycle is tangible proof of our commitment to achieving plastics circularity.”

New and improved recyclate for high-end applications

Borcycle™ MF1981SY is the first of several upcoming launches of rPO solutions made under the umbrella of the Borcycle technology. Borcycle™ MF1981SY will be available to Borealis customers in Europe. The compound is an exciting addition to the rPO portfolio because it is a 10% talc-filled compound that contains over 80% recycled material. It offers an ideal balance between stiffness and impact. The compound is especially suited for use in visible black parts, for example in small appliances.

Like its relatives in the mtm plastics family of recyclate materials, Borcycle™ MF1981SY is a truly sustainable offering. Recyclates from mtm save approximately 30% of CO2 emissions compared to virgin materials.

A number of significant improvements have been made to existing recyclate grades in the Purpolen portfolio.

“Mechanical recycling is presently a most eco-efficient method to implement the principles of the circular economy,” explains Guenter Stephan, Head of Mechanical Recycling, Borealis Circular Economy Solutions. “Borealis and mtm plastics are leveraging their respective areas of expertise to make significant progress in achieving polyolefin circularity by upscaling recycling output and ensuring the reliable supply of high-quality plastics recyclate for European producers, in particular.”

More information:
Recycling Borealis Borcycle
Source:

  Borealis AG