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(c) AZL. Comparison of battery casing in modular design and “cell-to-pack” design
Comparison of battery casing in modular design and “cell-to-pack” design
02.09.2022

AZL: Plastic-based multi-material solutions for cell-to-pack battery enclosures

The future of e-mobility will be determined in particular by safe battery enclosures. As batteries for electric vehicles become more performant, higher volumetric energy density plays a crucial role. If more energy is to be stored in less installation space, new material and design solutions are required. The development of suitable enclosures made of safe and highly robust lightweight materials is also required. This is a case for the Aachen Centre for Integrative Lightweight Production (AZL). A project on cell-to-pack battery enclosures for battery-electric vehicles, which has been eagerly awaited in the industry, will start in October this year there.

The future of e-mobility will be determined in particular by safe battery enclosures. As batteries for electric vehicles become more performant, higher volumetric energy density plays a crucial role. If more energy is to be stored in less installation space, new material and design solutions are required. The development of suitable enclosures made of safe and highly robust lightweight materials is also required. This is a case for the Aachen Centre for Integrative Lightweight Production (AZL). A project on cell-to-pack battery enclosures for battery-electric vehicles, which has been eagerly awaited in the industry, will start in October this year there.

The design of battery housings is crucial for safety, capacity, performance, and economics. The Cell-to-Pack project, which is starting now, will focus on developing concepts for structural components and for producing them based on a variety of materials and design approaches. The concepts will be compared in terms of performance, weight and production costs, creating new know-how for OEMs, producers and their suppliers throughout the battery vehicle value chain. Companies are now invited to participate in this new cross-industry project to develop battery enclosure concepts for the promising and trend-setting cell-to-pack technology.

The basis for the project is the lightweight engineering expertise of the AZL experts, which they have already demonstrated in previous projects for multi-material solutions for module-based battery housings. Together with 46 industry partners, including Audi, Asahi Kasei, Covestro, DSM, EconCore, Faurecia, Hutchinson, Johns Manville, Magna, Marelli and Teijin, 20 different multi-material concepts were optimized in terms of weight and cost and compared with a reference component made from aluminum. All production steps were modelled in detail to obtain reliable cost estimates for each variant. Result: depending on the concept, 20% weight or 36% cost savings potential could be identified by using multi-material composites compared to the established aluminum reference.

It is expected that the design concept of battery enclosures will develop in the direction of a more efficient layout. In this case, the cells are no longer combined in modules in additional production steps, but are integrated directly into the battery housing. The elimination of battery modules and the improved, weight-saving use of space will allow for higher packing density, reduced overall height and cost saving. In addition, various levels of structural integration of the battery housing into the body structure are expected. These new designs bring specific challenges, including ensuring protection of the battery cells from external damage and fire protection. In addition, different recyclability and repair requirements may significantly impact future designs. How the different material and structural options for future generations of battery enclosures for the cell-to-pack technology might look like and how they compare in terms of cost and environmental impact will be investigated in the new AZL project. In addition to the material and production concepts from the concept study for module-based battery enclosures, results from a currently ongoing benchmarking of different materials for the impact protection plate and a new method for determining mechanical properties during a fire test will also be incorporated.

The project will start on October 27, 2022 with a kick-off meeting of the consortium, interested companies can still apply for participation until then.

(c) Riri Group
Stones & Gold
01.09.2021

Riri Group’s FW 2022-23 collection: Creativity, innovation, sustainability

The Swiss group presents three creative inspirations to explore new shapes, colors, materials and define a new offer featuring a variety of solutions and ideas.
A tribute to health and to balance with nature, to the advanced goldsmith craftsmanship and to the effortless sophistication of industrial luxury: the FW 2022-23 collection by Riri Group is a true kaleidoscope of shapes, colors and materials, where three different creative inspirations meet – Biophilic, Stones&Gold and Industrial Luxe – for a high-end line of accessories.

All three paths are the result of state-of-the-art techniques, of an R&D effort and of the renowned expertise of the Swiss group. Part of the offer is also a selection of pieces by Cobrax Metal Hub, among which stand out buckles and locks with peculiar shapes and finishing.

The Swiss group presents three creative inspirations to explore new shapes, colors, materials and define a new offer featuring a variety of solutions and ideas.
A tribute to health and to balance with nature, to the advanced goldsmith craftsmanship and to the effortless sophistication of industrial luxury: the FW 2022-23 collection by Riri Group is a true kaleidoscope of shapes, colors and materials, where three different creative inspirations meet – Biophilic, Stones&Gold and Industrial Luxe – for a high-end line of accessories.

All three paths are the result of state-of-the-art techniques, of an R&D effort and of the renowned expertise of the Swiss group. Part of the offer is also a selection of pieces by Cobrax Metal Hub, among which stand out buckles and locks with peculiar shapes and finishing.

Looking to the new season with a positive and enthusiastic attitude, the Group continues to work towards an increasing sustainability when it comes to products and processes. The collection, in fact, is a further step toward Riri’s path of green responsibility that the company has taken to bring actual improvement in its sustainable performance. This year, Riri Group published its first Sustainability Report, calculated in compliance with Global Reporting Initiative Standard (GRI), and adopted recycled polyester as production standard for zips’ tapes.

Biophilic
A way to honor love for life, this line emphasizes the importance of physical and mental wellbeing, answering the questions raised during the challenges faced in the last year. Balance with nature becomes a concrete product circularity operation resorting to manufacturing processes with a low environmental impact and to organic and biodegradable materials. Among them stands out recycled polyester for zips which is Global Recycled Standard (GRS) certified, Global Organic Textile Standard certified organic cotton and other alternative fibers, such as nettle, a natural resource that is a great alternative to synthetic fibers. Rivets, zips, buttons and metal components are made of stainless steel, which guarantees durability and resistance, 100% recycled copper and aluminum – light, ductile and resistant to oxidation. Among the most interesting solutions are rice peel powder – used on buttons’ overseals – and eco-sustainable thermoplastic polyurethane, obtained from renewable raw sources.

Stones & Gold
Sophistication and advanced craftsmanship mark the pieces of this creative path which, inspired by goldsmith and glyptic craft tradition, reveals a delicate sense of positivity and richness. Gems, lapis lazuli, marble, and mother-of-pearl are protagonists of a refined selection of accessories designed to amaze and catch the eye, resembling actual jewels. Essential the use of gold, especially in its liquid form: dominating zips and buttons’ finishes, this precious and versatile metal becomes a decorative feature on printed tape.

Industrial luxe
The third proposal embodies the unique style and timeless elegance that have always defined Riri’s products, embellishing them with new engineering details which makes them very relevant. The accessories come with golden and black finishes, both glossy and matt, and explore shapes developed to bring life to a range of luxury accessories with a sophisticated industrial aesthetics. A dominating role goes to stainless steel, along with a selection of impactful and elegant tapes which includes jacquard options, for a retro-futuristic look that is revealed also through the use of mechanical elements, such as screws and etched metal sheets, and in the clean and boxy shapes of pullers and buttons.

Source:

Menabò Group for Riri Group

31.08.2021

DSM and SABIC: Creating recycled-based Dyneema®

Royal DSM, a global science-based company in Nutrition, Health and Sustainable Living, and SABIC, a global leader in the chemical industry, announced a collaboration to create recycled-based Dyneema®. Through a joint pilot with multiple CirculariTeam® members, the manufacturing and usage of Dyneema® using mixed plastic waste as feedstock (via mass balance approach) will be successfully demonstrated. It is an important step toward the future goal of fully closing the loop by delivering Dyneema® made from ultra-high molecular weight polyethylene (UHMwPE) waste. This collaboration underlines DSM’s and SABIC’s efforts to accelerate a circular economy for materials.

Royal DSM, a global science-based company in Nutrition, Health and Sustainable Living, and SABIC, a global leader in the chemical industry, announced a collaboration to create recycled-based Dyneema®. Through a joint pilot with multiple CirculariTeam® members, the manufacturing and usage of Dyneema® using mixed plastic waste as feedstock (via mass balance approach) will be successfully demonstrated. It is an important step toward the future goal of fully closing the loop by delivering Dyneema® made from ultra-high molecular weight polyethylene (UHMwPE) waste. This collaboration underlines DSM’s and SABIC’s efforts to accelerate a circular economy for materials.

By working together with members of CirculariTeam®, DSM will produce recycled-based Dyneema® made using SABIC’s certified circular ethylene as a pilot project in both a sailing rope and a pelagic trawl net application. The circular ethylene, from SABIC’s TRUCIRCLE™ portfolio, uses mixed plastic waste as feedstock (mass balance approach), which not only contributes to preventing valuable plastic from becoming waste and the avoidance of carbon emissions compared to incineration, but it will also help preserve fossil resources. These pilots are an important early-stage milestone in the journey toward making fully circular Dyneema® from HMPE post-production and post-consumer waste.

Jon Mitchell, Managing Director at Marlow Ropes: “We’re proud to be one of the first manufacturers to integrate recycled-based Dyneema® within our products and demonstrate the material’s feasibility. By collaborating with materials science pioneers such as DSM and SABIC, we are able to create products that not only deliver superlative functional performance but also have a lower environmental impact. Our products are trialed and tested by professional offshore sailing teams including 11th Hour Racing Team, a proud partner of ours at Marlow, with whom we share a progressive approach to seeking sustainable solutions: no more business as usual."

Klaus Walther, Managing Director at Gleistein: “Warm congratulations to DSM and SABIC for pushing the boundaries of science to deliver a truly unique product. We’re proud that our ropes can be produced from what once was typical household plastic waste. This is an important stepping stone towards becoming circular. It will enable our customer Maritiem BV to further develop high-tech fishing gear whilst contributing to the circular economy. Not to forget Cornelis Vrolijk Fishing Company, who again illustrate their commitment to Corporate Social Responsibility by introducing this concept in fishery.”

More information:
DSM Dyneema SABIC plastic waste
Source:

EMG for DSM

Photo: norda: DSMPMPR010
14.07.2021

norda™: Flagship product with DSM’s bio-based Dyneema® fiber

Royal DSM, a global science-based company in Nutrition, Health and Sustainable Living, confirmed the introduction of the first seamless trail running shoe made with bio-based Dyneema® fiber by norda™, a Canadian shoe brand.

Designed for runners by runners, norda™ was founded under the mission to empower athletes to unlock their peak potential through innovation and cutting-edge technology. The brand’s flagship product, norda™001, utilizes bio-based Dyneema® fiber to enhance performance and sustainability in a lightweight construction.

The shoe upper is seamlessly constructed with Dyneema® fabric, which benefits from the intrinsic properties of Dyneema®, the world’s strongest fiber™. Dyneema® fiber is engineered at the molecular level to provide high strength, low weight, waterproof and breathable properties – fusing the technical performance of ultra-light materials with aesthetic design that does not sacrifice strength or durability.

Royal DSM, a global science-based company in Nutrition, Health and Sustainable Living, confirmed the introduction of the first seamless trail running shoe made with bio-based Dyneema® fiber by norda™, a Canadian shoe brand.

Designed for runners by runners, norda™ was founded under the mission to empower athletes to unlock their peak potential through innovation and cutting-edge technology. The brand’s flagship product, norda™001, utilizes bio-based Dyneema® fiber to enhance performance and sustainability in a lightweight construction.

The shoe upper is seamlessly constructed with Dyneema® fabric, which benefits from the intrinsic properties of Dyneema®, the world’s strongest fiber™. Dyneema® fiber is engineered at the molecular level to provide high strength, low weight, waterproof and breathable properties – fusing the technical performance of ultra-light materials with aesthetic design that does not sacrifice strength or durability.

In addition to the increased foot stability and wearer comfort of the upper, Dyneema® fibers are also used to increase abrasion resistance and stretch in the shoe laces – providing four times the level of strength when compared to standard lace materials like nylon and polyester.

“When we set out to create the norda™ 001, our mission was to design an ultra-strong and durable high performance trail running shoe, and do it as sustainably as possible,” states Willamina and Nick Martire, Co-Founders, norda™. “To achieve our goal, we had to look outside of the standard materials used by the footwear industry. We realized the properties of bio-based Dyneema® beat everything available today.”

In line with DSM’s commitment to protect people and the environment they live in, bio-based Dyneema® boasts the same exact performance as conventional Dyneema® with a carbon footprint that is 90 percent lower than generic HMPE. Sourced from renewable, bio-based feedstock, DSM’s latest advancement in fiber technology uses the mass balance approach to further reduce the reliance on fossil fuel based resources, while still contributing to a more circular economy.

Source:

EMG for DSM

DSM/Sympatex Technologies: Launch of Bio-based Arnitel® specialty materials (c) Sympatex® Technologies
05.02.2021

DSM/Sympatex Technologies: Launch of Bio-based Arnitel® specialty materials

Royal DSM announces that its DSM Engineering Materials business will launch mass-balanced bio-based Arnitel®, a thermoplastic elastomer, together with Sympatex Technologies. In this way, DSM Engineering Materials is taking the next step on its sustainability journey and enabling its customers to transition to a more circular and bio-based economy.

To address growing consumer and legislative demand for lower carbon footprint and more sustainable feedstock, the sports and apparel value chain is increasingly integrating bio-based materials into its designs. By offering a new range of mass-balanced bio-based Arnitel®, DSM Engineering Materials is enabling membrane manufacturer, Sympatex Technologies to meet these demands and make more sustainable choices.

DSM’s bio-based Arnitel® is manufactured with bio-based feedstock using a mass-balance approach1. The end product contains more than 25% bio-based content by weight.

Royal DSM announces that its DSM Engineering Materials business will launch mass-balanced bio-based Arnitel®, a thermoplastic elastomer, together with Sympatex Technologies. In this way, DSM Engineering Materials is taking the next step on its sustainability journey and enabling its customers to transition to a more circular and bio-based economy.

To address growing consumer and legislative demand for lower carbon footprint and more sustainable feedstock, the sports and apparel value chain is increasingly integrating bio-based materials into its designs. By offering a new range of mass-balanced bio-based Arnitel®, DSM Engineering Materials is enabling membrane manufacturer, Sympatex Technologies to meet these demands and make more sustainable choices.

DSM’s bio-based Arnitel® is manufactured with bio-based feedstock using a mass-balance approach1. The end product contains more than 25% bio-based content by weight.

Sympatex uses Arnitel® to manufacture its waterproof, windproof, and breathable membranes for sports applications. The transition to bio-based feedstock will maintain the unique functional properties of Arnitel® and will enable Sympatex to easily shift to a more sustainable solution with a lower carbon footprint without having to requalify materials.

 

1 Mass balance accounting is a well-known approach that has been designed to trace the flow of materials through a complex value chain. The mass balance approach provides a set of rules for how to allocate the bio-based and/or recycled content to different products to be able to claim and market the content as ‘bio’-based or ‘recycled’-based. Source: Ellen MacArthur Foundation (Mass Balance White Paper).

07.01.2021

DSM/Clariter: Chemischen Recyclinglösung für Dyneema®-basierte Endprodukte

Royal DSM, ein globales wissenschaftlich fundiertes Unternehmen für Ernährung, Gesundheit und nachhaltiges Leben, und Clariter, ein internationales Clean-Tech-Unternehmen, geben heute ihre strategische Partnerschaft bekannt. Gemeinsam wollen sie eine chemische Recyclinglösung der nächsten Generation für Produkte auf Basis von Dyneema® von DSM entwickeln, einer ultrahohen Molekülmasse (Ultra-High-Molecular-Weight Polyethylene, UHMWPE). Als erster Schritt dieser Partnerschaft wurde eine Reihe von Musterprodukten - darunter Seile, Netze und ballistische Materialien, die mit Dyneema® hergestellt wurden - in der Clariter-Pilotanlage in Polen erfolgreich umgewandelt. Dies demonstriert das Recycling-Potenzial von Dyneema® und unterstreicht das aktive Engagement von DSM Protective Materials zur Gestaltung einer nachhaltigeren Welt.

Royal DSM, ein globales wissenschaftlich fundiertes Unternehmen für Ernährung, Gesundheit und nachhaltiges Leben, und Clariter, ein internationales Clean-Tech-Unternehmen, geben heute ihre strategische Partnerschaft bekannt. Gemeinsam wollen sie eine chemische Recyclinglösung der nächsten Generation für Produkte auf Basis von Dyneema® von DSM entwickeln, einer ultrahohen Molekülmasse (Ultra-High-Molecular-Weight Polyethylene, UHMWPE). Als erster Schritt dieser Partnerschaft wurde eine Reihe von Musterprodukten - darunter Seile, Netze und ballistische Materialien, die mit Dyneema® hergestellt wurden - in der Clariter-Pilotanlage in Polen erfolgreich umgewandelt. Dies demonstriert das Recycling-Potenzial von Dyneema® und unterstreicht das aktive Engagement von DSM Protective Materials zur Gestaltung einer nachhaltigeren Welt.

Im Einklang mit seinen ehrgeizigen Nachhaltigkeitszielen und nach der erfolgreichen Einführung von biobasiertem Dyneema® (Massenausgleich) arbeitet DSM Protective Materials aktiv an Wiederverwendungs- und Recyclinglösungen für Dyneema®-basierte Produkte am Ende ihrer Lebensdauer. Um technische Recyclinglösungen voranzutreiben, sind DSM Protective Materials und Clariter eine Partnerschaft eingegangen. Gemeinsam soll die Machbarkeit der Verwendung von Dyneema® als Ausgangsmaterial im chemischen Recyclingprozess von Clariter getestet werden. Mit Dyneema® hergestellte Musterprodukte wurden in der Pilotanlage von Clariter in Polen unter Probe gestellt. Die positiven Ergebnisse bestätigen die technische Realisierbarkeit der Umwandlung von Dyneema®-basierten Endprodukten in hochwertige Produktfamilien in Industriequalität: Öle, Wachse und Lösungsmittel durch Clariters patentierten dreistufigen chemischen Recycling-Prozess. Diese können als Inhaltsstoffe zur Herstellung neuer End- und Verbraucherprodukte weiterverwendet werden.

In Zukunft werden DSM Protective Materials und Clariter diese Initiative weiter vorantreiben, um eine nachhaltigere Welt zu gestalten. Aufbauend auf dem Erfolg des Versuchs im Labormassstab hat Clariter für 2021 Versuche im kommerziellen Massstab in seiner Anlage in Südafrika geplant. Dies mit dem Ziel, aus Dyneema® gewonnenes Rohmaterial in den europäischen Grossanlagen zu verwenden, die in den kommenden Jahren gebaut werden sollen. Darüber hinaus wird DSM weiterhin aktiv die Möglichkeiten zur Reduzierung der Umweltauswirkungen von Dyneema® über alle Produktlebensphasen hinweg untersuchen.

Source:

EMG Marcom

Moncler launches Grenoble collection with Dyneema® Composite Fabric (c) DSM Protective Materials
DSM Protective Materials DSMPMPR003b
11.11.2020

Moncler launches Grenoble collection with Dyneema® Composite Fabric

  • Royal DSM, a global science-based company in Nutrition, Health and Sustainable Living, today announced that, for the first time, Dyneema® Composite Fabrics are used by Moncler in the Fall/Winter 2020 Grenoble collection, which fuses form and function into high performance skiwear.

Moncler Grenoble is born of a passion for research and implements cutting-edge technology to push the limits of its potential. The design team identified Dyneema® as an innovative fabric it could use to push the level of its performance to the next peak, incorporating the material into the new collection as a departure from the conventional use of cotton and polyester.

  • Royal DSM, a global science-based company in Nutrition, Health and Sustainable Living, today announced that, for the first time, Dyneema® Composite Fabrics are used by Moncler in the Fall/Winter 2020 Grenoble collection, which fuses form and function into high performance skiwear.

Moncler Grenoble is born of a passion for research and implements cutting-edge technology to push the limits of its potential. The design team identified Dyneema® as an innovative fabric it could use to push the level of its performance to the next peak, incorporating the material into the new collection as a departure from the conventional use of cotton and polyester.

Sandro Mandrino, the Head of Design for Moncler Grenoble, was the first designer of the luxury fashion brand to incorporate Dyneema® into one of his creations through the Moncler Genius project. The Moncler Genius project advocates radical co-creation where multiple designers create their own signature collections in collaboration with the house. Together, these collections translate into one vision of the future and, as one of the nine designers, Mandrino’s interpretation of the future of fashion features Dyneema® Composite Fabric.

Using variations of the fabric in both white and black allowed Mandrino to bring his vision to life by merging skiwear, space suits and technology all in one. “ 3 Moncler Grenoble is first and foremost about performance,” states Mandrino, who integrated constructive solutions with fabric technology to develop a line that was meant to perform both on and off the ski slopes.

Dyneema®, the world’s strongest and lightest fiber, is 15 times stronger than steel yet light enough to float on water. The unmatched performance and protection of products made with Dyneema® have made it the material of choice in critical applications where failure is not an option for more than 30 years. In fabric form, Dyneema® is available in composites, denim, knits, wovens and hybrids for composite reinforcements. And because Dyneema® fabrics are made using Dyneema® fiber, they intrinsically provide high strength, low weight, waterproof and breathable properties – allowing designers to fuse the technical performance of ultra-light products with aesthetic design that doesn’t sacrifice strength or durability.

The Moncler team used the Grenoble collection as an opportunity to experiment and further understand the nature and behavior of Dyneema® fabrics, while simultaneously incorporating material performance with practical design. “Future collections will focus on expanding to new designs and fabric options in collaboration with DSM,” adds Mandrino.

“We are very excited to be working with the Moncler team to launch a collection of wonderful garments that allow people to explore the outdoors more safely and for longer periods of time,” states Marcio Manique, Global Business Director, Consumer & Professional Protection, DSM Protective Materials. “We look forward to further supporting Moncler as they develop innovative, high-tech garments that are also sustainably sourced through the introduction of bio-based Dyneema® fabrics.”

In line with DSM’s commitment to protect people and the environment they live in, the world’s first-ever bio-based ultra-high molecular weight polyethylene fiber was introduced in May 2020. Bio-based Dyneema® boasts the same exact performance as conventional Dyneema® with a carbon footprint that is 90 percent lower than generic HMPE. DSM and Moncler’s continued partnership will not only provide high performance, light weight garments for outdoor enthusiasts but also environmentally sustainable alternatives that contribute to a more circular economy.