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The partners at the BioFibreLoop kick-off event. Photo: DITF
The partners at the BioFibreLoop kick-off event.
01.07.2024

BioFibreLoop has been started

The German Institutes of Textile and Fiber Research Denkendorf (DITF) are coordinating the research project, which is funded as part of the European Union's Horizon Europe research and innovation program. The aim of BioFibreLoop is to develop recyclable outdoor and work clothing made from renewable bio-based materials. The kick-off event took place in Denkendorf on June 26 and 27, 2024.

The textile industry is facing two challenges: on the one hand, production must become more sustainable and environmentally friendly and, on the other, consumers are expecting more and more smart functions from clothing.

In addition, the production of functional textiles often involves the use of chemicals that are harmful to the environment and health and make subsequent recycling more difficult.

Intelligent innovations must therefore ensure that harmful chemicals are replaced, water is saved and more durable, recyclable bio-based materials are used, thereby reducing the usually considerable carbon footprint of textile products. Digitalized processes are intended to ensure greater efficiency and a closed cycle.

The German Institutes of Textile and Fiber Research Denkendorf (DITF) are coordinating the research project, which is funded as part of the European Union's Horizon Europe research and innovation program. The aim of BioFibreLoop is to develop recyclable outdoor and work clothing made from renewable bio-based materials. The kick-off event took place in Denkendorf on June 26 and 27, 2024.

The textile industry is facing two challenges: on the one hand, production must become more sustainable and environmentally friendly and, on the other, consumers are expecting more and more smart functions from clothing.

In addition, the production of functional textiles often involves the use of chemicals that are harmful to the environment and health and make subsequent recycling more difficult.

Intelligent innovations must therefore ensure that harmful chemicals are replaced, water is saved and more durable, recyclable bio-based materials are used, thereby reducing the usually considerable carbon footprint of textile products. Digitalized processes are intended to ensure greater efficiency and a closed cycle.

For example, the BioFibreLoop project uses laser technology to imitate natural structures in order to produce garments with water and oil-repellent, self-cleaning and antibacterial properties. At the end result of the research work will be affordable, resource and environmentally friendly, yet high-performance and durable fibers and textiles made from renewable sources such as lignin, cellulose and polylactic acid will be available. All processes are aimed at a circular economy with comprehensive recycling and virtually waste-free functionalization based on nature's example. In this way, greenhouse gas emissions could be reduced by 20 percent by 2035.

The technology for the functionalization and recycling of bio-based materials is being developed in three industrial demonstration projects in Austria, the Czech Republic and Germany. At the end of the project, a patented circular, sustainable and reliable process for the production of recyclable functional textiles will be established.

The BioFibreLoop project has a duration of 42 months and a total budget of almost 7 million euros, with 1.5 million going to the coordinator DITF.

The consortium consists of 13 partners from nine countries who contribute expertise and resources from science and industry:

  • German Institutes of Textile and Fiber Research Denkendorf (DITF), Coordinator, Germany
  • Next Technology Tecnotessile Società nazionale di ricerca R. L., Italy
  • Centre Technologique ALPhANOV, France
  • G. Knopf’s Sohn GmbH & Co. KG, Germany
  • FreyZein Urban Outdoor GmbH, Austria
  • BEES - BE Engineers for Society, Italy
  • BAT Graphics Vernitech, France
  • Interuniversitair Micro-Electronica Centrum, Belgium
  • Idener Research & Development Agrupacion de Interes Economico, Spain
  • Teknologian tutkimuskeskus VTT Oy, Finland
  • Det Nationale Forskningscenter for Arbejdsmiljø, Denmark
  • Steinbeis Innovation gGmbH, Germany
  • NIL Textile SRO, Czech Republic
Source:

Deutsche Institute für Textil- und Faserforschung

Photo: AWOL
20.09.2022

Halley Stevensons: Unique waxed cotton finishing with new Monforts line

Monforts has installed and commissioned a new Montex finishing range at the Baltic Works of Halley Stevensons in Dundee, Scotland, to further boost the weatherproofing specialist’s highly flexible operations.

The range, with a working width of two metres, was built at the Montex assembly plant in Austria and consists of a Montex®Coat coating unit in knife execution for paste and foam coating and a Montex 8500 6F stenter.

Founded in 1864, Halley Stevensons has amassed unique technical know-how and manufacturing experience in the art of waxed cotton for weatherproofed fabrics and is able to provide international orders in custom colours and finishes to very low minimum quantities where required. The company exports worldwide and its premium brand customers include Belstaff, Barbours, Filson and J.Crew.

The range has replaced one of the company’s older stenter/coating lines and has already enabled Halley Stevensons to recreate various products with lower coating applications at higher speeds than was previously possible.

Monforts has installed and commissioned a new Montex finishing range at the Baltic Works of Halley Stevensons in Dundee, Scotland, to further boost the weatherproofing specialist’s highly flexible operations.

The range, with a working width of two metres, was built at the Montex assembly plant in Austria and consists of a Montex®Coat coating unit in knife execution for paste and foam coating and a Montex 8500 6F stenter.

Founded in 1864, Halley Stevensons has amassed unique technical know-how and manufacturing experience in the art of waxed cotton for weatherproofed fabrics and is able to provide international orders in custom colours and finishes to very low minimum quantities where required. The company exports worldwide and its premium brand customers include Belstaff, Barbours, Filson and J.Crew.

The range has replaced one of the company’s older stenter/coating lines and has already enabled Halley Stevensons to recreate various products with lower coating applications at higher speeds than was previously possible.

Waxed cotton was originally developed by sailors in the early 15th century when Scottish North Sea herring fleets began treating flax sailcloth with fish oils and grease in an attempt to waterproof their sails. Remnants of these sails were used by the sailors as capes to withstand the high winds and sea spray.

By the mid 1850s, sailcloth was being treated with linseed oil, but while initially highly effective, it would yellow and stiffen through weathering over time and eventually lose its waterproofing qualities.

In the years that followed, various treatments were applied to cottons in an attempt to find the most effective weatherproofing solution, and the combination of densely-woven cotton impregnated with a paraffin waxed coating proved most successful. For over 150 years, Halley Stevensons created many different variations of both woven constructions and finishing treatments and now supplies thousands of metres of waxed cotton every year, with each roll produced to custom specifications.

“The beauty of waxed cotton is its durability and longevity,” says Managing Director James Campbell. “The fabrics are breathable, with the wax adjusting to ambient temperatures to be softer and more breathable in warm weather and stiffer and more wind proof in cold conditions.”
While traditional waxes are petroleum or paraffin based, Halley Stevensons has always been comfortable about using a waste product from industry and reusing it to make products that last a lifetime.  

“We are always exploring different finishing techniques and one of our most popular finishes is our hybrid aero – an emulsified blend of waxes,” Campbell says. “This fabric is water repellent but has little wax in the mixture so the handle is much drier to touch than the traditional wet waxes.”

The company has also recently launched a new 100% plant-based wax – Ever Wax Olive – consisting of a blend of olive oil, rape seed and castor bean with comparable water repellence to petroleum and a far better rating than other natural waxes which have come before it.

“The high tradition of skills and fabric innovation imposed by our original guildsmen is still our benchmark standard of honest workmanship today,” Managing Director James Campbell concludes “We use responsibly sourced cotton fabrics and processes that are gentle to the product and low impact to the environment. Our dyeing methods use very low levels of water and our waxes are simply heated up for application and cooled down to store when not in use, meaning no waste discharges. Now, with this new Monforts line, we are also achieving running speeds two-to-three times faster than with the older stenter, combined with less gas usage. It’s proved a great partnership.”

(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) adidas AG
27.07.2022

adidas aims at creating a more equitable and inclusive future of sport

To celebrate the 50th year of Title IX, adidas announced a series of brand initiatives and commitments aimed at creating a more equitable and inclusive future of sport . Commencing with the signing of 15 female student-athletes to name, image, and likeness (NIL) deals across seven collegiate sports, the brand is further underscoring its commitment to women and LGBTQI+ athletes in sport through an expanded partnership with Athlete Ally to grow chapter footprints on college campuses.

In addition, adidas is partnering with Candace Parker to create a mentorship program that provides newly signed student-athletes with guidance as they navigate the NIL era.

“As a leading global sports brand, we're focused on creating long-term equity in sport . That means both investing in the next generation of athletes today and also supporting them in the future,” said Rupert Campbell, president of adidas North America. “We welcome this group of powerful student-athletes to the adidas family and look forward to working alongside them to define what is possible for the future of sport.”

To celebrate the 50th year of Title IX, adidas announced a series of brand initiatives and commitments aimed at creating a more equitable and inclusive future of sport . Commencing with the signing of 15 female student-athletes to name, image, and likeness (NIL) deals across seven collegiate sports, the brand is further underscoring its commitment to women and LGBTQI+ athletes in sport through an expanded partnership with Athlete Ally to grow chapter footprints on college campuses.

In addition, adidas is partnering with Candace Parker to create a mentorship program that provides newly signed student-athletes with guidance as they navigate the NIL era.

“As a leading global sports brand, we're focused on creating long-term equity in sport . That means both investing in the next generation of athletes today and also supporting them in the future,” said Rupert Campbell, president of adidas North America. “We welcome this group of powerful student-athletes to the adidas family and look forward to working alongside them to define what is possible for the future of sport.”

The initial group of student-athletes was revealed at the brand’s Title IX celebration in New York City announced by Billie Jean King and Ally Love , attended by Layshia Clarendon, Kristine Lilly, Ifeoma (Ify) Onumonu, Imani Dorsey, Kelsey Robinson, media, family, and friends.

The following student-athletes have been announced as adidas partners:
Maddy Anderson – Mississippi St., soccer
Emily Mason – Rutgers, soccer
Brianna Copeland – Indiana, softball     
Erin Moss – Georgia Tech, volleyball
Lauren Dooley – Kansas, volleyball
Moriah Oliveira – Miami, track & field
Kinsey Fiedler – Washington, softball
Gianna Pielet – Texas A&M, tennis
Jayci “Jay” Goldsmith – Texas A&M, tennis
Izzy Redmond – ASU, gymnastics
Nicklin Hames – Nebraska, volleyball
Jaiden Thomas – NC State, soccer
Jameese Joseph – NC State, soccer
Hailey Van Lith – Louisville, basketbal
India Wells – Grambling State, softball

An Investment in All Athletes
adidas believes long-term equity in sport starts with investment. This initial all-female group of student-athletes builds on the brand’s March announcement of a sweeping, equitable and inclusive NIL Ambassador Network reaching more than 50,000 eligible student-athletes across 23 sports, all genders and 109 D1 universities beginning this fall at Power 5 programs and HBCUs.

Looking towards the next 50 years of Title IX, the Education Amendment prohibiting discrimination against students based on sex, adidas will continue investing in athletes and programs that increase representation and visibility, with this being a commitment to create a more progressive future of equity in sport .

More information:
adidas Sportswear Equality
Source:

adidas AG

(c) adidas AG
Roland Auschel, Executive Board member, responsible for Global Sales
22.02.2022

adidas Supervisory Board extends appointments of Roland Auschel and Brian Grevy

The Supervisory Board of adidas AG extended the appointment of Executive Board member Roland Auschel, responsible for Global Sales, by two years beyond 2022 until the end of 2024. Roland Auschel has been member of the Executive Board of adidas AG since 2013. At the same time, the Supervisory Board of adidas AG extended the appointment of Executive Board member Brian Grevy, responsible for Global Brands, by five years beyond 2022 until early 2028. Brian Grevy has been member of the Executive Board of adidas AG since 2020.

“On behalf of the Supervisory Board, I am very pleased to announce that we have extended the appointments of both Roland and Brian. Our long-term strategy ‘Own the Game’ has the consumer at its heart. Both Roland and Brian play key roles in bringing this consumer focus to life with their respective functions. We are convinced that they will continue the successful execution of our strategy together with the entire Executive Board”, stated Thomas Rabe, Chairman of the Supervisory Board of adidas AG.

The Supervisory Board of adidas AG extended the appointment of Executive Board member Roland Auschel, responsible for Global Sales, by two years beyond 2022 until the end of 2024. Roland Auschel has been member of the Executive Board of adidas AG since 2013. At the same time, the Supervisory Board of adidas AG extended the appointment of Executive Board member Brian Grevy, responsible for Global Brands, by five years beyond 2022 until early 2028. Brian Grevy has been member of the Executive Board of adidas AG since 2020.

“On behalf of the Supervisory Board, I am very pleased to announce that we have extended the appointments of both Roland and Brian. Our long-term strategy ‘Own the Game’ has the consumer at its heart. Both Roland and Brian play key roles in bringing this consumer focus to life with their respective functions. We are convinced that they will continue the successful execution of our strategy together with the entire Executive Board”, stated Thomas Rabe, Chairman of the Supervisory Board of adidas AG.

AZL schließt gemeinsam mit 46 Industriepartnern Projekt zu Batteriegehäusen erfolgreich ab (c) AZL
06.12.2021

AZL: Gemeinsames Projekt zu Batteriegehäusen mit 46 Industriepartnern

Gemeinsam mit insgesamt 46 Industriepartnern konnten mehrere, verschiedene Konzepte für Kunststoff-basierte Multimaterial-Batteriegehäuse erarbeitet werden, mit denen deutliche Einsparpotentiale bei Gewicht und Kosten möglich sind. Im Projektverlauf kristallisierten sich zwei wichtige Kernthemen heraus, die in Folgeprojekten gesondert behandelt werden sollen: Bodenaufprallschutz und Feuerbeständigkeit. Diese zwei Folgeprojekte starten am 26. Januar 2022. Ein Projekt zur Entwicklung und Realisierung von Prototypen für Mitte nächsten Jahres 2022 ist in Planung.

Gemeinsam mit insgesamt 46 Industriepartnern konnten mehrere, verschiedene Konzepte für Kunststoff-basierte Multimaterial-Batteriegehäuse erarbeitet werden, mit denen deutliche Einsparpotentiale bei Gewicht und Kosten möglich sind. Im Projektverlauf kristallisierten sich zwei wichtige Kernthemen heraus, die in Folgeprojekten gesondert behandelt werden sollen: Bodenaufprallschutz und Feuerbeständigkeit. Diese zwei Folgeprojekte starten am 26. Januar 2022. Ein Projekt zur Entwicklung und Realisierung von Prototypen für Mitte nächsten Jahres 2022 ist in Planung.

Batteriegehäuse gehören zu den Schlüsselkomponenten in E-Fahrzeugen und werden derzeit in der Regel aus Aluminium hergestellt. Genau diese Komponente analysierte das AZL in dem jetzt durchgeführten Projekt mit einem großen Konsortium aus Automobilherstellern, Automobilzulieferern, Rohstoffherstellern und Maschinenherstellern. „Der enorme Zuspruch aus der Industrie unterstreicht die Relevanz des Themas“, freut sich der Projektleiter Warden Schijve, der zudem sehr zufrieden mit dem Verlauf und den Ergebnissen ist. Schließlich lassen sich bis zu 36 % des Gewichts und bis zu 20 % der Kosten einsparen, wenn anstelle herkömmlicher Lösungen Multi-Material-Verbunde auf Basis von Kunststoffen zum Einsatz kommen.

Um zu den Ergebnissen zu gelangen, hat das AZL unter Mitwirkung seiner Partnerunternehmen, zu denen unter anderem Audi, Asahi Kasei, Covestro, DSM, EconCore, Faurecia, Formosa, Hengrui, Hutchinson, IPTE, Johns Manville, Magna, Marelli und Teijin, gehörten, zunächst fünf Subkomponenten eines Batteriegehäuses definiert: die Gehäusewanne, die Bodenschutzplatte, den Crash-Rahmen, die Querbalken und den Gehäusedeckel. Außerdem analysierten die Partner insgesamt 44 marktrelevante, existierende Serienkomponenten und Konzepte genauer und erstellten eine umfangreiche Übersicht über die verschiedenen Standards sowie Anforderungen auf nationaler, internationaler und OEM-Ebene. Prämisse dabei war, gleiche oder gar bessere mechanische Kennwerte zu erreichen als bei herkömmlichen Lösungen. So sollten beispielsweise mindestens gleiche Steifigkeiten, Sicherheiten bei seitlichem Aufprall, EMI-Abschirmung sowie Flammschutz vorhanden sein. Um nun die alternativen Lösungen zu ermitteln, entwickelte das AZL 20 Designkonzepte mit unterschiedlichen Materialkombinationen. Zur Analyse und Auslegung der verschiedenen Konzepte wurden mehr als 500 FEM-Modelle erstellt und über 1.500 CAE-Simulationen durchgeführt.

Während sich Folgeprojekt 1 mit einer anwendungsbezogenen Testmethode und der Untersuchung der Sicherheit verschiedener Materialkombinationen für den Bodenaufprallschutz beschäftigt, steht in Folgeprojekt 2 die Flammresistenz verschiedener Materialien und Materialkombinationen im Vordergrund. Ziel ist es Prüfverfahren zu entwickeln, die es erlauben, die Aufprall-/Feuerbeständigkeit auf Materialebene unter Berücksichtigung der spezifischen Anforderungen an ein Batteriegehäuse im Vergleich zu Standardmaterialien zu untersuchen.

Firmen mit Interesse an Herstellung von Batteriegehäusen können sich an Philipp Fröhlig und Alexander Knauff wenden:
Philipp Fröhlig, AZL Aachen GmbH, Senior Project Manager, Tel: +49 241 47573514, philipp.froehlig@azl-aachen-gmbh.de
Alexander Knauff, AZL Aachen GmbH, Manager Industrial Services, Tel: +49 241 47573516, alexander.knauff@azl-aachen-gmbh.de

 

Source:

AZL Aachen GmbH

12.10.2021

DSM to showcase armor solutions made with Dyneema® at Milipol Paris 2021

DSM, the inventor and manufacturer of Dyneema®, will be exhibiting at one of the leading events for homeland security and safety, Milipol Paris 2021, from October 19-22.

The performance characteristics of Dyneema® make it ideal for a variety of applications, including soft and hard armor ballistics to protect against today’s advanced and emerging threats. In addition, Dyneema® combines next-generation fiber technology and unidirectional engineering to deliver armor solutions with unmatched ballistic stopping power in a lightweight and flexible composite.

By implementing Dyneema®, body armor manufacturers are able to use less material in the development of their ballistic vests, plates and helmets. This leads to weight savings upwards of 30 percent when compared to competitive materials, without impacting ballistic performance. The lightweight construction of armor made with Dyneema® also mitigates injuries associated with the cumulative effects of daily armor use – while improving situational awareness, as well as cognitive and tactical performance.

DSM, the inventor and manufacturer of Dyneema®, will be exhibiting at one of the leading events for homeland security and safety, Milipol Paris 2021, from October 19-22.

The performance characteristics of Dyneema® make it ideal for a variety of applications, including soft and hard armor ballistics to protect against today’s advanced and emerging threats. In addition, Dyneema® combines next-generation fiber technology and unidirectional engineering to deliver armor solutions with unmatched ballistic stopping power in a lightweight and flexible composite.

By implementing Dyneema®, body armor manufacturers are able to use less material in the development of their ballistic vests, plates and helmets. This leads to weight savings upwards of 30 percent when compared to competitive materials, without impacting ballistic performance. The lightweight construction of armor made with Dyneema® also mitigates injuries associated with the cumulative effects of daily armor use – while improving situational awareness, as well as cognitive and tactical performance.

While decreasing the load on the wearer, Dyneema® is simultaneously able to reduce the impact of material manufacturing on our planet. In line with DSM’s commitment to protect people and the environment they live in, we have developed the first-ever bio-based ultra-high molecular weight polyethylene fiber and unidirectional (UD) material. Bio-based Dyneema® boasts the same exact performance as conventional Dyneema® with a carbon footprint that is 90 percent lower than generic HMPE.

Source:

DSM Protective Materials / EMG

(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/MKU Ltd: High-performance, lightweight ballistic protection in Brazil (c) DSM Protective Materials: DSMPMPR007
26.04.2021

DSM/MKU Ltd: High-performance, lightweight ballistic protection in Brazil

Royal DSM, a global science-based company in Nutrition, Health and Sustainable Living, announced that, together with armor manufacturing partner, MKU Ltd, has provided next generation armor technology with Dyneema® unidirectional (UD) material to support the Sao Paulo police.

The Sao Paulo police, which is comprised of more than 100,000 officers, is the first law enforcement agency in Brazil to initiate a tender for personal protective equipment based on the latest National Institute of Justice (NIJ) .06 standards for body armor, which provide comprehensive and rigorous compliance for the performance and testing of ballistic materials. In addition to NIJ .06 certification, the tender set extremely lightweight requirements for level IIIA soft armor vests.

Royal DSM, a global science-based company in Nutrition, Health and Sustainable Living, announced that, together with armor manufacturing partner, MKU Ltd, has provided next generation armor technology with Dyneema® unidirectional (UD) material to support the Sao Paulo police.

The Sao Paulo police, which is comprised of more than 100,000 officers, is the first law enforcement agency in Brazil to initiate a tender for personal protective equipment based on the latest National Institute of Justice (NIJ) .06 standards for body armor, which provide comprehensive and rigorous compliance for the performance and testing of ballistic materials. In addition to NIJ .06 certification, the tender set extremely lightweight requirements for level IIIA soft armor vests.

The hybrid vest solution developed MKU, a global leader in defense and homeland security solutions, for the Sao Paulo police utilizes predominantly Dyneema® UD material to reach new levels of performance and protection while simultaneously enhancing user comfort and mobility. Dyneema®, a strong and light fiber, is the one of leading global brands for ultra-high molecular weight polyethylene (UHMwPE) fiber, UD and fabrics, offering ballistic solutions for personal and vehicle armor that combine maximum strength with minimum weight.

In soft armor applications, Dyneema® offers up to 35 percent weight reduction when compared to competitive materials, while still protecting against both legacy and emerging threats.

In addition to the lightweight armor requirement, the vests were also thoroughly tested to ensure performance with NIJ ballistic reports, NIJ certification and in-house ballistic testing both during the tender process and after the vests were received.

In line with DSM’s commitment to protect people and the environment they live in, one of the world’s first ever bio-based HMPE fibers was introduced in 2020.

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.

Warden Schijve joins the AZL team (c) AZL
Dr. Michael Emonts, Warden Schijve, Philipp Fröhlig und Dr. Kai Fischer (von links nach rechts) im AZL Tech Center
02.11.2020

Warden Schijve joins the AZL team

Aachen - Warden Schijve, former Chief Scientist Composites at SABIC, recently joined the AZL engineering team in October. As Design Leader, he is further expanding the product and application development division of the service provider for business development and technology development in lightweight.

AZL Aachen GmbH supports companies along the entire value chain in implementing competitive lightweight technologies. "We develop component and production concepts for companies, including the analysis of costs and production-relevant KPIs. With our broad range of material and production technologies, we provide a comprehensive solution for the development and evaluation of products and identify the most suitable paths to implementation. Warden Schijve will use his many years of experience to support our partners in the efficient development, evaluation and implementation of component and production solutions through to market readiness," says Dr. Kai Fischer, Managing Partner of AZL Aachen GmbH.

Aachen - Warden Schijve, former Chief Scientist Composites at SABIC, recently joined the AZL engineering team in October. As Design Leader, he is further expanding the product and application development division of the service provider for business development and technology development in lightweight.

AZL Aachen GmbH supports companies along the entire value chain in implementing competitive lightweight technologies. "We develop component and production concepts for companies, including the analysis of costs and production-relevant KPIs. With our broad range of material and production technologies, we provide a comprehensive solution for the development and evaluation of products and identify the most suitable paths to implementation. Warden Schijve will use his many years of experience to support our partners in the efficient development, evaluation and implementation of component and production solutions through to market readiness," says Dr. Kai Fischer, Managing Partner of AZL Aachen GmbH.

From his 35 years in the composites industry with Fokker, DSM and SABIC, Warden Schijve brings a broad and deep expertise in structural design, plastics and composites, as well as processing technology.
Warden Schijve: “In my career I’ve always seen that it pays off to evaluate various different design concepts, which may use different materials or material combinations, to finally come to the most cost-competitive lightweight applications. Taking into account different manufacturing technologies right from the beginning can save a lot in later stages of component development. And this is what fascinates me about AZL and its eco-system: the available knowledge on a wide variation of process and production technologies, including cutting edge equipment, at both the AZL Tech Center, and the various institutes present in the total RWTH Aachen Campus.”

Dr. Michael Emonts, Managing Partner of AZL Aachen GmbH: "We are delighted that Warden Schijve, as a well-known face from the AZL community, will enrich us in developing lightweight applications, production systems and processes, identifying competitive technology optimizations through the analysis of markets and applications, and supporting our customers in the industrial implementation of the developed technologies."

Warden Schijve will also lead the project for a concept study for future battery casings based on composite-based multi-material systems. The AZL started the project in October together with 30 participating companies from the entire value chain to get an overview of existing component solutions, evaluate the advantages of a multi-material approach and develop a multi-material component design including a production concept for battery casings.

DSM enables ground-breaking protective cycling jersey with Dyneema® fabric for Tour de France (c) DSM Protective Materials
Sportswear Dyneema® fabric
27.08.2020

DSM enables ground-breaking protective cycling jersey with Dyneema® fabric for Tour de France

Royal DSM, a global science-based company in Nutrition, Health and Sustainable Living, today announces that Dyneema® is driving the performance of Team Sunweb’s protective cycling jerseys in the 2020 Tour de France. Together with its partners, Team Sunweb and Craft Sportswear, DSM has helped to deliver a jersey that, when combined with a protective baselayer, offers cyclists effective abrasion protection at speeds up to 60km/h, while also reducing the severity of open wounds at even higher speeds. In this way, DSM underlines its commitment to protect people and the environment they live in.

Professional cycling places its participants in considerable danger; in recent years, the Tour de France has averaged 1.5 crashes per stage, while crashes in one-day classics are even more frequent. Cycling jerseys can support riders by enabling protection for a large portion of the body, while allowing for moisture transport to the surface and offering low thermal resistance. However, cycling jerseys made with conventional materials offer limited protective performance.

Royal DSM, a global science-based company in Nutrition, Health and Sustainable Living, today announces that Dyneema® is driving the performance of Team Sunweb’s protective cycling jerseys in the 2020 Tour de France. Together with its partners, Team Sunweb and Craft Sportswear, DSM has helped to deliver a jersey that, when combined with a protective baselayer, offers cyclists effective abrasion protection at speeds up to 60km/h, while also reducing the severity of open wounds at even higher speeds. In this way, DSM underlines its commitment to protect people and the environment they live in.

Professional cycling places its participants in considerable danger; in recent years, the Tour de France has averaged 1.5 crashes per stage, while crashes in one-day classics are even more frequent. Cycling jerseys can support riders by enabling protection for a large portion of the body, while allowing for moisture transport to the surface and offering low thermal resistance. However, cycling jerseys made with conventional materials offer limited protective performance.

To address these needs and enable a safer riding experience, DSM has teamed up with Craft Sportswear and Team Sunweb to develop a cycling jersey that offers much-needed increases in abrasion resistance without compromising the comfort or low weight that cyclists demand. The new jersey is the latest protective cycling apparel solution, following the launch of the protective bib shorts (2015) and the protective baselayer (2019). The jersey will be worn for the first time by Team Sunweb in this year’s Tour de France. When combined with the protective baselayer, the new jersey offers complete protection against abrasions up to 60km/h, a speed below which professional cyclists spend 95% of race time in a typical stage.

Dyneema® has been used to protect workers in high-stake industries for more than 30 years – and the expansion into fabrics means both professional and recreational cyclists can enjoy the intrinsic performance capabilities of Dyneema® in their protective garments without sacrificing wearer comfort.

“Being 15 times stronger than steel on a weight for weight basis, Dyneema® fiber offers an excellent solution to increasing the abrasion resistance of a fabric, reducing the severity of road rash in case of a crash, without compromising the rider weight or comfort,” states Piet Rooijakkers, Head of R&D Team Sunweb “What’s more, the new jersey can form part of a modular protection solution, where riders can easily take off or put on layers according to race and weather conditions. In this way, the new jersey will support our riders significantly in the Tour de France and beyond.”

“The new cycling jersey with Dyneema® will make a real difference to cyclists facing the dangers of professional competition, and help ensure the health of both people and the environment,” states Wilfrid Gambade, President DSM Protective Materials. “The jersey is physical proof of the great achievements collaboration with expert partners can deliver. Moving forward, we will work with Craft and Team Sunweb to integrate bio-based Dyneema® fibers into protective cycling jerseys – contributing even further to a safe and healthy world!”

In line with its commitment to protect people and the environment they live in, DSM introduced the world’s first-ever bio-based HMPE fiber in May 2020. Bio-based Dyneema® fiber offers the same exact performance as conventional Dyneema® with a carbon footprint that is 90% lower than generic HMPE. The continued partnership between DSM, Craft and Team Sunweb will not only provide innovative, lightweight solutions for cyclists, but also environmentally sustainable alternatives that contribute to a circular economy.

27.04.2018

HYGIENICALLY CLEAN HEALTHCARE ADVISORY BOARD ANNOUNCES FULL SLATE OF MEMBERS

TRSA, the global association for the linen, uniform and facility services industry, and the creator and administrator of the Hygienically Clean Certification announced today its 2018 Hygienically Clean Healthcare Advisory Board slate of members.

“The board is responsible for administering, enforcing, and revising TRSA’s Hygienically Clean Healthcare (HCH) Standards. Additional duties include establishing and maintaining criteria and procedures for the certification of healthcare textile processing in commercial, cooperatives, and in-house healthcare laundries and facilities. These subject matter experts will provide guidance regarding best management practices (BMPs), inspections and testing to ensure that the Hygienically Clean Healthcare Certification Program benefits consumers, laundry-processing facilities and textile services customers,” said Joseph Ricci, President and CEO of TRSA.

TRSA, the global association for the linen, uniform and facility services industry, and the creator and administrator of the Hygienically Clean Certification announced today its 2018 Hygienically Clean Healthcare Advisory Board slate of members.

“The board is responsible for administering, enforcing, and revising TRSA’s Hygienically Clean Healthcare (HCH) Standards. Additional duties include establishing and maintaining criteria and procedures for the certification of healthcare textile processing in commercial, cooperatives, and in-house healthcare laundries and facilities. These subject matter experts will provide guidance regarding best management practices (BMPs), inspections and testing to ensure that the Hygienically Clean Healthcare Certification Program benefits consumers, laundry-processing facilities and textile services customers,” said Joseph Ricci, President and CEO of TRSA.

Members of the newly formed board of directors, who represent the entire industry -- linen, uniform and facility service companies, large central laundries, healthcare linen, uniform and facility services customers of TRSA members, suppliers, and experts from related healthcare and other professional organizations -- will serve a three-year term:

Randy Bartsch
CEO, Ecotex Healthcare Linen Service Inc.
Chairman

Rick Kislia
Chief Operating Officer
Crescent Laundry
Vice Chairman

David J. Stern
President & CEO, Paris Companies
Secretary

Greg Anderson
CEO, Campus Laundry

Angela Becker
Senior Program Leader, Textile Care RD&E, Ecolab

Murray L. Cohen, PhD, MPH, CIH
Owner, Consultants in Disease and Injury Control (CDIC)

Dr. Alexis M. Elward, MD
Pediatric Infectious Disease
Washington University School of Medicine in St. Louis

Eoin Flavin
Director, European Operations, WSI

David F. Goldsmith, MSPH, PhD, LLC
George Washington & Georgetown Universities

James Hall
CEO, Northwest Health Care Linen

Tony Long
VP, Risk Management, Angelica
Lynn A. Moreau, RN, BSN
Clinical Liaison Manager
HandCraft Linen Services

Michael Potack
Chairman, Unitex

Robert Raphael
Co-President
Service Linen Supply Inc.

Liz Remillong
Vice President, Strategic Alliance
Crothall Healthcare

Douglas Waldman
President, Superior Linen Service

Charles Rossmiller
Director Laundry Programs
Textile Sales
Medline Industries, Inc.

Thomas Smith
Director, Safety & Training
Foussard Montague Associates, Inc.

 

DSM-Niaga announces research collaboration with ECOR © Niaga
Niaga Productionline
20.12.2017

DSM-Niaga announces research collaboration with ECOR

Geleen, NL - Royal DSM, a global science-based company active in health, nutrition and materials, today announces that DSM-Niaga and ECOR are to start a research collaboration. The collaboration will focus on developing fully recyclable and healthier alternatives for particleboard, MDF and other panel materials which can be used in industries such as building & construction, furniture, interior decoration and displays. ECOR offers technology for circular materials and has an R&D facility in Venlo, the Netherlands.

Looking at the piles of waste generated by the interior and construction industries, design for recycling is inevitable. Both ECOR and DSM-Niaga have been redesigning products to be fully recyclable back into the same product. The irreversible combination of materials and ingredients used in most products made with MDF and particleboard is the biggest challenge for technically and economically feasible recycling. Both ECOR and DSM-Niaga want to outsmart complexity for healthier and recyclable products.

Geleen, NL - Royal DSM, a global science-based company active in health, nutrition and materials, today announces that DSM-Niaga and ECOR are to start a research collaboration. The collaboration will focus on developing fully recyclable and healthier alternatives for particleboard, MDF and other panel materials which can be used in industries such as building & construction, furniture, interior decoration and displays. ECOR offers technology for circular materials and has an R&D facility in Venlo, the Netherlands.

Looking at the piles of waste generated by the interior and construction industries, design for recycling is inevitable. Both ECOR and DSM-Niaga have been redesigning products to be fully recyclable back into the same product. The irreversible combination of materials and ingredients used in most products made with MDF and particleboard is the biggest challenge for technically and economically feasible recycling. Both ECOR and DSM-Niaga want to outsmart complexity for healthier and recyclable products.

Eric Logtens, CEO ECOR-NOBLE Environmental Benelux commented: “The concept that traditional materials like tabletops are up for incineration or disposal after their life cycle will be eliminated. Combining ECOR and Niaga® technologies, the core materials of products can be made from recycled content, and can be fully recycled after use.”

Chris Reutelingsperger, Chief Technology Officer DSM-Niaga commented: “By combining ECOR and Niaga, waste becomes a treasure. I can’t stop thinking of all the possibilities, and I hope that designers will approach us for ideas to make beautiful products and challenge us to broaden the possibilities of these technologies.”

In recent months ECOR and DSM-Niaga explored a collaboration by combining each other’s technologies. The technology of ECOR can make materials from natural fibers, with water, pressure and heat alone. DSM-Niaga manufactures products by using a reversible adhesive. This adhesive enables easy decoupling of different material layers, for full recovery and high value recycling. Both technologies were combined and tested in diverse product applications, like furniture and displays. The preliminary results led to further investigating of applications and will lead to new fully recyclable products.

Both technologies combined offer a fully recyclable alternative to all products made from MDF and particleboard, without compromising on material safety, quality, and recyclability. The joint objective of both companies is to offer manufacturing processes to local companies, solving local waste problems and boosting local economies on a global scale.

More information:
ECOR DSM-Niaga
Source:

DSM Media Relations