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(c) adidas AG
21.04.2023

adidas TERREX and National Geographic launch hiking collection

adidas TERREX announces a multi-season collaboration with National Geographic, consisting of high-performance outdoor wear. The inaugural collection is built to celebrate the role of photography in the culture of outdoor sport - as well-equipped hikers turn their ability to explore more places, and spirit of adventure, into stunning content.

To celebrate this relationship, designers at adidas TERREX combed the National Geographic photography archives for stunning stills of some of the most remote yet moving locations on earth, integrated in unique all over prints in a bold new hiking collection. All pieces are unified by National Geographic’s iconic yellow icon.

Places celebrated in the collection include a snow-covered sandstone monocline in Comb Ridge, Utah, a 120-mile-long, north to south stretch that defines the State’s red rock landscape, as well as textured portraits of shale, - captured on the coast of Norway’s northernmost county - highlighting the sedimentary rock’s distinctive formations.

adidas TERREX announces a multi-season collaboration with National Geographic, consisting of high-performance outdoor wear. The inaugural collection is built to celebrate the role of photography in the culture of outdoor sport - as well-equipped hikers turn their ability to explore more places, and spirit of adventure, into stunning content.

To celebrate this relationship, designers at adidas TERREX combed the National Geographic photography archives for stunning stills of some of the most remote yet moving locations on earth, integrated in unique all over prints in a bold new hiking collection. All pieces are unified by National Geographic’s iconic yellow icon.

Places celebrated in the collection include a snow-covered sandstone monocline in Comb Ridge, Utah, a 120-mile-long, north to south stretch that defines the State’s red rock landscape, as well as textured portraits of shale, - captured on the coast of Norway’s northernmost county - highlighting the sedimentary rock’s distinctive formations.

The 51-piece collection includes women’s, men’s, and gender-neutral offerings – all built to equip the wearer in multi-terrain environments:

  • A part of the collection is the RAIN.RDY Jacket; a 2.5L waterproof and seam-sealed outer garment built to facilitate epic adventures. The men’s jacket features a bold print of the shell formations in the Porsanger Peninsula, Norway, while the women’s is inspired by stills of White Sands National Park in New Mexico.
  • A long sleeve shirt is finished with the bold National Geographic yellow icon and reflective details.
  • The TERREX Swift R3 GORE-TEX Hiking shoes offer the peak combination of a lightweight construction and cushioning as seen in trail running shoes with the stability of a hiking boot. Finished in a print inspired by a stunning aerial shot of Earth, the hiking shoes come with a GORE-TEX lining and membrane seal so water is kept out, and a Continental™ Rubber outsole for optimal grip in wet or dry conditions.
  • The WIND.RDY: GET SHELTERED Jacket, with wind-resistant technology and a water repellent ripstop fabric, allows explorers to feel protected and confident in many weather conditions. The men’s and women’s versions come with bold prints inspired by photography including that of sandstone and snow at Comb Ridge, Utah. Smart design features including a bungee-cord enabled adjustable hem, a lightweight fabric and reflective details. Additionally, it features a bold new lenticular logo design that alternates between Terrex and National Geographic from different perspectives – and is made in part with recycled materials.
More information:
adidas Outdoor outdoor apparel
Source:

adidas AG

(c) ECOSENSOR™ by Asahi Kasei
18.11.2022

Asahi Kasei Group celebrates 100 years at ISPO Munich 2022

The Japanese textile brand ECOSENSOR™ by Asahi Kasei Advance continues its eco-high tech path and joins ISPO, the influential fashion and textile fair dedicated to sportwear and athleisure-wear, as part of an Asahi Kasei space within the ISPO Brandnew area, presenting its AW 2024/2025 & SS2024 collections, made of high-tech fabrics implementing new-generation values, with the aim of keeping nature, body and mind in harmony.

2022 is a special time for Asahi Kasei as it celebrates its 100th anniversary. This year at ISPO Munich (28-30th November), Asahi Kasei Group present its innovation world featuring three of its brands: ECOSENSOR™, ROICA™ and RespiGard™.
 
ECOSENSOR™ presents 47 new references that meet the needs of the contemporary consumer, such as durability, wellbeing and performance. Being capable of combining active climate control, exquisite touch, lightness and comfort with sustainable values, ECOSENSOR™ stands out as a unique eco-high-tech performance proposition in its market. The collection covers the different market applications with 3 items for INNERWEAR, 1 for OUTERWEAR, 13 for SPORT KNIT and 30 for SPORT WOVENS.

The Japanese textile brand ECOSENSOR™ by Asahi Kasei Advance continues its eco-high tech path and joins ISPO, the influential fashion and textile fair dedicated to sportwear and athleisure-wear, as part of an Asahi Kasei space within the ISPO Brandnew area, presenting its AW 2024/2025 & SS2024 collections, made of high-tech fabrics implementing new-generation values, with the aim of keeping nature, body and mind in harmony.

2022 is a special time for Asahi Kasei as it celebrates its 100th anniversary. This year at ISPO Munich (28-30th November), Asahi Kasei Group present its innovation world featuring three of its brands: ECOSENSOR™, ROICA™ and RespiGard™.
 
ECOSENSOR™ presents 47 new references that meet the needs of the contemporary consumer, such as durability, wellbeing and performance. Being capable of combining active climate control, exquisite touch, lightness and comfort with sustainable values, ECOSENSOR™ stands out as a unique eco-high-tech performance proposition in its market. The collection covers the different market applications with 3 items for INNERWEAR, 1 for OUTERWEAR, 13 for SPORT KNIT and 30 for SPORT WOVENS.

New this season is the application of the RespiGard™ by Polypore unique membrane designed for outdoor apparel. Its innovative pore structure is too small for water droplets to penetrate but features high porosity that allows for airflow and moisture evaporation.

In order to show at best the performances and possible applications of the fabrics made with RespiGard™, ECOSENSOR™ will feature at its ISPO space an ad hoc created outfit by the outerwear brand.

Furthermore, the majority of ECOSENSOR™ fabrics are made with sustainable ingredients which are certified by international certifications such as GRS and RCS through a traceable and transparent production process and supply chain.  100% of the stretch articles (representing 35% of the collection) are made with ROICA™ EF by Asahi Kasei, the recycled stretch yarn made from pre-consumer materials. Even the dyeing and finishing phases - key moments for performancewear - have been certified by international labels such as bluesign® or OEKO-TEX® Standard 100.

Source:

ECOSENSOR™ by Asahi Kasei / C.L.A.S.S..

08.09.2022

Monforts at ITMA ASIA + CITME

Monforts will highlight its technologies for special technical textile applications at this year’s ITMA ASIA + CITME which takes place at the National Exhibition and Convention Center in Shanghai, China, from November 20-24.

One of Monforts' developments is the Montex 8500 XXL stenter system for the production of technical fabrics in widths of up to 6.8 metres. Among the products made on this system are treated nonwovens for the geotextiles and filter media markets, tarpaulins, advertising banners, black-out curtains, membranes and many more.

On Montex©Coat coating lines, meanwhile, the possibilities range from the single-sided application of finishing agents for outdoor clothing and adding functionality to home textiles, to the creation of materials for sophisticated lightweight construction and automotive and aerospace components.

Monforts will highlight its technologies for special technical textile applications at this year’s ITMA ASIA + CITME which takes place at the National Exhibition and Convention Center in Shanghai, China, from November 20-24.

One of Monforts' developments is the Montex 8500 XXL stenter system for the production of technical fabrics in widths of up to 6.8 metres. Among the products made on this system are treated nonwovens for the geotextiles and filter media markets, tarpaulins, advertising banners, black-out curtains, membranes and many more.

On Montex©Coat coating lines, meanwhile, the possibilities range from the single-sided application of finishing agents for outdoor clothing and adding functionality to home textiles, to the creation of materials for sophisticated lightweight construction and automotive and aerospace components.

“Many more applications are possible, such as the overdyeing of denim, the creation of double-face coated materials, fabrics awnings, tents and medical drapes and the pre-treatment of substrates for digital printing”, explains Gunnar Meyer, Monforts area sales manager for China. “A range of different doctor blades and their combinations can be supplied to meet individual requirements, including air knife, roller knife, foam, screen and magnetic roller coating. The latter option is recommended for lines with working widths of over 2.4 metres.”

In addition, Monforts can provide the necessary explosion-proof ranges for solvent-based coatings and high temperature processes up to 320°C, such as the PTFE coating of nonwoven filter material. These lines are equipped with special burners, stenter chains, and insulation.

Source:

 A. Monforts Textilmaschinen GmbH & Co. KG / AWOL Media

(c) Freudenberg Performance Materials Holding SE & Co. KG
21.06.2022

Freudenberg endorses further products with ECO-CHECK label

Freudenberg Performance Materials (Freudenberg) is endorsing further sustainable products with its ECO-CHECK label introduced last year. These products comply with various environmental criteria. With immediate effect, five more solutions bear the label making the company’s commitment to sustainability visible.

Leather goods
The newly-endorsed ECO-CHECK products include one Evolon® microfilament textile application. This is a reinforcement material for leather goods that is manufactured with no solvent and no binder. It contains up to 80 percent recycled PET and is suitable for a broad range of applications. The material is produced at Freudenberg’s facility in Colmar, France, where the manufacturing process is highly sustainable: it is certified to STeP by OEKO-TEX® and fully complies with the DETOX TO ZERO by OEKO-TEX® criteria.

Freudenberg Performance Materials (Freudenberg) is endorsing further sustainable products with its ECO-CHECK label introduced last year. These products comply with various environmental criteria. With immediate effect, five more solutions bear the label making the company’s commitment to sustainability visible.

Leather goods
The newly-endorsed ECO-CHECK products include one Evolon® microfilament textile application. This is a reinforcement material for leather goods that is manufactured with no solvent and no binder. It contains up to 80 percent recycled PET and is suitable for a broad range of applications. The material is produced at Freudenberg’s facility in Colmar, France, where the manufacturing process is highly sustainable: it is certified to STeP by OEKO-TEX® and fully complies with the DETOX TO ZERO by OEKO-TEX® criteria.

Healthcare applications
In the field of healthcare, the bio-based M 1714 wound pad with superior absorption for more challenging wounds has now been endorsed with the ECO-CHECK label. The dressing consists of a mix of bio-based fibers derived from natural sources and exhibits a smooth wound contact layer. The product has been evaluated for industrial compostability and conforms to ISO 13432.

Architectural applications
The sustainable TF 400 Eco F mesh fabric for textile architecture from Mehler Texnologies® now also bears the ECO-CHECK label. Its yarn is made of 100% recycled PET bottles and its characteristics are very similar to those of conventional mesh fabrics. In 2021, it was awarded first place by the Architectural Membrane Association (AMA) in the “product” category in recognition of its properties.

Shoes
In the shoe industry, the binder-free strobel insoles have been endorsed as particularly sustainable. They contain a high percentage of recycled green bottle flakes. Moreover, the insoles themselves are fully recyclable.

Filtration applications
The two layered, needle-punched nonwoven filter medium that has just been endorsed with the ECO-CHECK label has impressive sustainability characteristics. Made entirely of polyester, more than half the fibers consist of recycled material.

Source:

Freudenberg Performance Materials Holding SE & Co. KG

07.06.2022

EPTA World Pultrusion Conference 2022 explores composites sustainability

The European Pultrusion Technology Association (EPTA) has published a report from its latest conference, which focuses on advances in sustainability and recycling.

More than 130 professionals from the global pultrusion community gathered at the 16th World Pultrusion Conference in Paris on 5-6 May 2022. Organised by EPTA in collaboration with the American Composites Manufacturers Association (ACMA), the event featured 25 international speakers sharing insight on market trends, developments in materials, processing and simulation technologies, and innovative pultruded applications in key markets such as building and infrastructure, transportation and wind energy.

The European Pultrusion Technology Association (EPTA) has published a report from its latest conference, which focuses on advances in sustainability and recycling.

More than 130 professionals from the global pultrusion community gathered at the 16th World Pultrusion Conference in Paris on 5-6 May 2022. Organised by EPTA in collaboration with the American Composites Manufacturers Association (ACMA), the event featured 25 international speakers sharing insight on market trends, developments in materials, processing and simulation technologies, and innovative pultruded applications in key markets such as building and infrastructure, transportation and wind energy.

‘Bio-pultrusion’:  
Composites based on natural fibres offer a number of benefits, including low density and high specific strength, vibration damping, and heat insulation. The German Institutes for Textile and Fiber Research Denkendorf (DITF) are developing pultrusion processes using bio-based resins and natural fibres. Projects include the BioMat Pavilion at the University of Stuttgart, a lightweight structure which combines ‘bamboo-like’ natural fibre-based pultruded profiles with a tensile membrane.

Applications for recycled carbon fibre (rCF):
The use of rCF in composite components has the potential to reduce their cost and carbon footprint. However, it is currently used to a limited extent since manufacturers are uncertain about the technical performance of available rCF products, how to process them, and the actual benefits achievable. Fraunhofer IGCV is partnering with the Institute for Textile Technology (ITA) in the MAI ÖkoCaP project to investigate the technical, ecological and economic benefits of using rCF in different industrial applications. The results will be made available in a web-based app.

Circularity and recycling:
The European Composites Industry Association (EuCIA) is drafting a circularity roadmap for the composites industry. It has collaborated with the European Cement Association (CEMBUREAU) on a position paper for the EU Commission’s Joint Research Centre (JRC) which outlines the benefits of co-processing end-of-life composites in cement manufacturing, a recycling solution that is compliant with the EU’s Waste Framework Directive and in commercial operation in Germany. Initial studies have indicated that co-processing with composites has the potential to reduce the global warming impact of cement manufacture by up to 16%. Technologies to allow recovery of fibre and/or resin from composites are in development but a better understanding of the life cycle assessment (LCA) impact of these processes is essential. EuCIA’s ‘circularity waterfall,’ a proposed priority system for composites circularity, highlights the continued need for co-processing.

Sustainability along the value chain:
Sustainability is essential for the long-term viability of businesses. Resin manufacturer AOC’s actions to improve sustainability include programmes to reduce energy, waste and greenhouse gas emissions from operations, the development of ‘greener’ and low VOC emission resins, ensuring compliance with chemicals legislation such as REACH, and involvement in EuCIA’s waste management initiatives. Its sustainable resins portfolio includes styrene-free and low-styrene formulations and products manufactured using bio-based raw materials and recycled PET.

Source:

European Pultrusion Technology Association EPTA

Mobile robot system for automated loading of a bobbin creel (c) STFI
12.05.2022

STFI with sustainable and digital innovations at Techtextil 2022

The Saxon Textile Research Institute (STFI) will be presenting innovative highlights from research and development at Techtextil 2022, the international trade fair for technical textiles and nonwovens. In addition to a warp-knitted textile façade greening in a modular system and textile lightweight construction elements for the building sector made from hemp as a renewable raw material, the STFI will also be showing innovations from nonwovens research. The project optiformTEX is an example of the nonwovens competence: in this project, the mass per unit area was specifically influenced for the production of semi-finished products in the automotive sector. Furthermore, the Chemnitz Institute exhibits an ecological foam coating for protective textiles. Central highlight of the STFI's presence at the fair is also a mobile robot system, which demonstrates the automated loading of a small-scale bobbin creel.

The Saxon Textile Research Institute (STFI) will be presenting innovative highlights from research and development at Techtextil 2022, the international trade fair for technical textiles and nonwovens. In addition to a warp-knitted textile façade greening in a modular system and textile lightweight construction elements for the building sector made from hemp as a renewable raw material, the STFI will also be showing innovations from nonwovens research. The project optiformTEX is an example of the nonwovens competence: in this project, the mass per unit area was specifically influenced for the production of semi-finished products in the automotive sector. Furthermore, the Chemnitz Institute exhibits an ecological foam coating for protective textiles. Central highlight of the STFI's presence at the fair is also a mobile robot system, which demonstrates the automated loading of a small-scale bobbin creel.

Highlights at Techtextil 2022
The greened façade tile is a system with which large building surfaces can be cost-effectively greened through a simple, modular segment structure. In addition to insulating the building, the system has been created to meet the design requirements of a modern city centre; low-maintenance greening is made possible through functional integration in the textile carrier layer and coordinated plant selection.

Moulded components made of natural fibre nonwovens are increasingly used in the automotive sector. Conventional nonwovens currently have uniform masses per unit area. Technical solutions for load-oriented component reinforcement and the resulting optimised use of materials represent an enormous economic potential. The basic idea of “optiformTEX” was therefore to specifically influence the mass per unit area distribution in the pile before the semi-finished product is consolidated. As a result, a textile-technological process and the corresponding plant component were successfully developed.

Future-oriented materials are offered by developments from the field of renewable raw materials in combination with bio-based resin systems: In the “Gro-Coce” project, an innovative ceiling system was developed by combining sustainable building products and methods. Currently, a high-performance hemp-based semi-finished product as well as the steps for its reproducible production by means of textile surface formation is developed by the research team. Initial application and load tests of the hemp-based semi-finished products on wooden beams confirmed the high performance potential of the natural fibre materials.

Special functional textiles are based on composite materials with coatings or membranes. The previous production of the coatings/membranes poses ecological and health risks. At STFI, solvent-free, purely aqueous coating systems and a technology for their application were therefore developed for the protective textile sector, resulting in a breathable, waterproof and wash-resistant textile coating.

The central highlight of the STFI's presence at the fair is a mobile robot system, which demonstrates the automated loading of a small-scale bobbin creel. At the STFI, the robot is part of the “textile factory of the future”, where a play mat is woven and processed step by step along the textile chain.

adidas introduces its new Terrex Mountaineering Range (c) adidas AG
01.04.2022

adidas introduces its new Terrex Mountaineering Range

  • adidas TERREX athlete Laura Dahlmeier tackles Mont Blanc’s Brouillard Pillar with Thomas and Alexander Huber in the film, United By Summits
  • The trio are kitted out in adidas TERREX’s new Techrock Mountaineering range
  • The adidas TERREX Techrock collection gives climbers the lightweight technical wear required to defy the elements mountainside

Mountaineering is about reaching personal summits. It’s about showing your mettle, finding your freedom and winning in front of no one but yourself and nature.

  • adidas TERREX athlete Laura Dahlmeier tackles Mont Blanc’s Brouillard Pillar with Thomas and Alexander Huber in the film, United By Summits
  • The trio are kitted out in adidas TERREX’s new Techrock Mountaineering range
  • The adidas TERREX Techrock collection gives climbers the lightweight technical wear required to defy the elements mountainside

Mountaineering is about reaching personal summits. It’s about showing your mettle, finding your freedom and winning in front of no one but yourself and nature.

It’s a version of success that adidas TERREX athlete Laura Dahlmeier is reacquainting herself with. A multiple Olympic and world champion, the German biathlete is used to the noise of winning in front of huge crowds. Now retired, Laura is reconnecting with the challenges of a sport that first gave her a taste of freedom as a child: climbing.
Laura sets herself a particularly formidable goal in United By Summits. In the film, she is joined by German climbing brothers Thomas and Alexander Huber for an ascent of Mont Blanc’s infamous Brouillard Pillar and the rarely-attempted Bonington Route made famous by British climber Chris Bonington in 1965.

For this, and any other climb, mountaineers require lightweight but rugged technical wear that ensures easy movement while defying the elements mountainside, allowing for complete focus on the rock and ice in front of them.

Introducing the adidas TERREX Techrock Mountaineering range – worn by Laura and the Huber brothers in United By Summits as they climb one of the Alps’ most demanding routes.

Keeping climbers dry is the adidas TERREX Techrock Light Gore-Tex Mountaineering Jacket, a lightweight, packable jacket with breathable Gore-Tex Active 3-layer membrane to repel water. Adjustable hood and cuffs are compatible with helmets and gloves.

For insulation on colder climbs, the adidas TERREX Techrock Year Round Down Jacket locks in warmth with adidas-patented HeatSeal baffle construction and PrimaLoft® Gold insulation in the shoulders and cuffs. Pertex® Diamond Fuse 20 Denier yarn provides resistance to abrasion along with a water-repellent DWR-finished fabric.

For rugged, weather-resistant legwear that keeps climbers moving freely on any ascent, adidas TERREX Techrock Mountaineering Softshell Pants balance comfort and protection. Flexible, wool-backed softshell fabric moves easily while a tough nylon surface protects against abrasion. A soft waistband helps prevent bunching under harnesses for an easy-moving silhouette – essential on those long climbing days.

Kitted out in this new adidas TERREX Techrock Mountaineering range 4,000 metres above sea level, Laura and the Huber brothers achieved their goals together.

Source:

adidas AG

(c) BioRECO2ver Project
19.01.2022

nova-Institute: BioRECO2VER project - Conversion of CO2 into chemical building blocks

CO2 as renewable carbon source
Carbon is the main element in numerous materials used in industrial processes and in our daily lives. It is currently mostly provided from fossil sources. But what if carbon could be used directly from CO2 emissions? Biotechnology shows particularly great potential for the eco-effective conversion of climate-damaging CO2 emissions into valuable basic chemicals. A consortium of 12 partners investigated this pathway in the EU-funded BioRECO2VER project, examining the conversion of CO2 emissions from refineries and the cement industry into the chemical building blocks isobutene (C4H8) and lactate (C2H6O3).

CO2 as renewable carbon source
Carbon is the main element in numerous materials used in industrial processes and in our daily lives. It is currently mostly provided from fossil sources. But what if carbon could be used directly from CO2 emissions? Biotechnology shows particularly great potential for the eco-effective conversion of climate-damaging CO2 emissions into valuable basic chemicals. A consortium of 12 partners investigated this pathway in the EU-funded BioRECO2VER project, examining the conversion of CO2 emissions from refineries and the cement industry into the chemical building blocks isobutene (C4H8) and lactate (C2H6O3).

Innovative chemo-enzymatic concept for CO2 Capture
Project partner Luleå University of Technology (LTU) focused on the first process step of capturing and concentrating CO2 from industrial point sources. Their team developed a hybrid chemo-enzymatic process consisting of a novel solvent blend and an ultrastable carbonic anhydrase (CA) enzyme. The solvent blend included an amino acid ionic liquid and a tertiary amine and displayed a good compromise between enzyme compatibility, absorption rate, capacity and desorption potential. In addition, LTU generated ultrastable enzyme mutants that showed 50% increased resistance to selected flue gas inhibitors compared to the original CA. This 3-component CO2 capture process was scaled up in a pilot rig, and the set-up further used for real off gas pre-treatment in the project.

Two unique pilots for biotechnological CO2 Conversion/Utilization
The biotechnological conversion of (captured) CO2 and the co-substrate hydrogen by microorganisms poses technical and economic challenges because it takes place in the liquid phase and the substrates are gases which are poorly soluble. The BioRECO2VER project investigated two approaches to address this: fermentation under elevated pressure and bio-electrochemistry with in situ production of hydrogen.

Pressurized fermenter
Project coordinator VITO designed a flexible and multifunctional high-pressure fermenter, customized for research activities with advanced online sensors, monitoring and control, and also including a membrane filtration unit to achieve high concentrations of the microbial biocatalysts. The set-up was broadly tested in the BioRECO2VER project both with pure CO2 and CO2-rich off-gases but can also be used for investigations involving other poorly soluble gases, such as methane, oxygen, or synthesis gas. Pressures up to 10 bar can be applied.

First solely CO2-based bio-electrochemical platform
University of Girona designed and tested a bio-electrochemical platform. The key differentiators of the pilot plant are:

  • Two parallel lines to test engineered strains and bio-electrochemical systems
  • Fully automated pilot plant capable to control key operational parameters (pCO2, pO2, pH2, pH, Temperature) to intensify the process performance
  • Solid-liquid separation unit (membrane) to recover the planktonic cells and return them into the bio-electrochemical systems.

This unique infrastructure will be used beyond the project to support further research and development activities in the broad area of CO2 capture and conversion.

Source:

nova-Institut GmbH

(c) INDA, the Association of the Nonwoven Fabrics Industry
07.09.2021

INDA Announces the 2021 RISE® Innovation Award Finalists

  • Innovations in Protection, Efficiency and Engineered Fabrics

INDA, the Association of the Nonwoven Fabrics Industry, announced the three finalists for the prestigious RISE® Innovation Award during the 11th edition of the Research, Innovation & Science for Engineered Fabrics Conference, (RISE®) to be held virtually September 28-30, 2021.  The award recognizes novel innovations in the nonwovens industry that creatively use next-level science and engineering principles to solve material challenges and expand the usage of nonwovens and engineered fabrics. These three finalists will present their innovative material science solutions as they compete for the RISE® Innovation Award.

  • Innovations in Protection, Efficiency and Engineered Fabrics

INDA, the Association of the Nonwoven Fabrics Industry, announced the three finalists for the prestigious RISE® Innovation Award during the 11th edition of the Research, Innovation & Science for Engineered Fabrics Conference, (RISE®) to be held virtually September 28-30, 2021.  The award recognizes novel innovations in the nonwovens industry that creatively use next-level science and engineering principles to solve material challenges and expand the usage of nonwovens and engineered fabrics. These three finalists will present their innovative material science solutions as they compete for the RISE® Innovation Award.

Canopy Respirator
Canopy is an innovative respirator that is fully mechanical, non-electrostatic, with a filter designed for superior breathability while offering the wearer facial transparency. The breakthrough respirator features 5.5mm water column resistance at 85 liters (3 cubic feet) per minute, 2-way filtration, and a pleated filter that contains over 500 square centimeters of surface area. The patented Canopy respirator resists fluids, and eliminates fogging of eyeglasses.  

Evalith® 1000 Series
Johns Manville’s innovative Alpha Binder is a formaldehyde-free, high bio-carbon content, toxic-free binder formulation ideal for carpet mat applications. Alpha Binder eliminates monomer and polymer synthesis, uses a bio-degradable catalyst, and requires 70% less water in manufacturing. The resulting glass mats made of Alpha Binder are named “Evalith 1000” and reduces energy consumption during manufacturing by over 70% compared to alternative petroleum-based binders. Evalith 1000 was commercialized in North America in 2020.

Fiber Coated, Heat Sealable, Breathable, Hybrid Membrane, Fabric Protection
TiGUARD protective fabric is a construction of monolithic or hybrid imperious/moisture eliminating membranes with a surface covered with micro-fiber. This nonwoven product is a multi-layer all polyester fabric specifically for chemical and microbial protective fabrics, products, and garments. It is constructed of compatible heat seal-able materials which lend themselves to high-speed heat seal-able production and ultimately automated manufacture of garments without sewing. It is a combination of a densely flocked polyester fiber surface on polyester membrane supported by polyester scrim.
Virtual RISE™ conference attendees include technology scouts and product developers in the nonwoven/engineered fabrics industry seeking new developments to advance their businesses. These attendees will electronically vote for the recipient of the 2021 RISE® Innovation Award, on Wed. Sept. 29th. The winner will be announced Thurs., Sept. 30th.

The conference program will cover timely and relevant industry topics including: Material Science Developments for Sustainable Nonwovens; Increasing Circularity in Nonwovens; Market Intelligence & Economic Insights; Promising Innovations in Nonwovens; Process Innovations in Nonwovens; Material Innovations in Nonwovens;  the full program can be viewed on the link: https://www.riseconf.net/conference.php

More information:
INDA nonwovens
Source:

INDA, the Association of the Nonwoven Fabrics Industry

Links das Granulat für den 3D-Druck, rechts das gefriergetrocknete Mikrogel, das die Basis für die umweltverträgliche Membran legen soll. Foto: (c) Simon Brönner/HSNR. Links das Granulat für den 3D-Druck, rechts das gefriergetrocknete Mikrogel, das die Basis für die umweltverträgliche Membran legen soll.
Links das Granulat für den 3D-Druck, rechts das gefriergetrocknete Mikrogel, das die Basis für die umweltverträgliche Membran legen soll.
27.05.2021

Hochschule Niederrhein und Aachener Leibniz-Institut: Forschung an umweltverträglicher Funktionskleidung

Sie ist in fast jedem Schrank: Funktionskleidung – ob als Shirt zum Joggen oder als Jacke zum Wandern. Spezielle Beschichtungen der Textilien sorgen für trockene Haut, indem sie Regen nicht durchdringen lassen und Schweiß nach außen leiten. Forschungsteams der Hochschule Niederrhein und des DWI – Leibniz-Instituts für Interaktive Materialien aus Aachen arbeiten gemeinsam an einer neuen Art umweltfreundlicher Funktionskleidung.
 
Die üblicherweise verwendeten Materialien, sogenannte halbdurchlässige Membranen, sind weder umweltverträglich noch recyclingfähig. Durch diese dünnen Trennschichten wird Kleidung mit verschiedenen Funktionen ausgestattet, beispielsweise Nässeschutz, Atmungsaktivität und eine natürliche Temperaturregulierung. Die Membranen finden Anwendung im Sport-, Outdoor- und Workwear-Segment, aber auch in Heimtextilien (etwa Matratzenschutz), Schuhen und technischen Textilien aus dem Medizinbereich.
 

Sie ist in fast jedem Schrank: Funktionskleidung – ob als Shirt zum Joggen oder als Jacke zum Wandern. Spezielle Beschichtungen der Textilien sorgen für trockene Haut, indem sie Regen nicht durchdringen lassen und Schweiß nach außen leiten. Forschungsteams der Hochschule Niederrhein und des DWI – Leibniz-Instituts für Interaktive Materialien aus Aachen arbeiten gemeinsam an einer neuen Art umweltfreundlicher Funktionskleidung.
 
Die üblicherweise verwendeten Materialien, sogenannte halbdurchlässige Membranen, sind weder umweltverträglich noch recyclingfähig. Durch diese dünnen Trennschichten wird Kleidung mit verschiedenen Funktionen ausgestattet, beispielsweise Nässeschutz, Atmungsaktivität und eine natürliche Temperaturregulierung. Die Membranen finden Anwendung im Sport-, Outdoor- und Workwear-Segment, aber auch in Heimtextilien (etwa Matratzenschutz), Schuhen und technischen Textilien aus dem Medizinbereich.
 
Ziel des Projekts ist es, eine Membran zu entwickeln, die sich bei körperlicher Betätigung speziell auf ihren Träger einstellt. Die Lösung, an der die Partner arbeiten, ist eine neue Barrieremembran aus sogenannten thermoplastischen Elastomeren. In die Membran sind Mikrogele eingebaut - kleine Partikel, die Wasser aufnehmen, wieder abgeben können und biokompatibel sind. Durch Kombination eines Trägermaterials mit Mikrogelen soll eine umweltfreundliche, pflegeleichte semipermeable Barriere mit hoher Funktionalität entwickelt werden. Zusätzlich werden spezielle Verfahren zur Beschichtung von Textilien mit diesen Membranen angewandt, die ein verbessertes Recycling der Kleidung ermöglichen und ebenfalls auf den Einsatz umweltbelastender Substanzen verzichten.
 
Um dieses Ziel zu erreichen, bündeln die Forscherteams ihre Kompetenzen aus den Bereichen Polymerchemie und Textiltechnik. Die Wissenschaftlerinnen und Wissenschaftler forschen daran, die Mikrogel-basierten Membranen mittels 3D-Druck als digitale Beschichtungsmethode nur an bestimmten Stellen eines Kleidungsstücks.
 
Von der Forschung profitieren sollen insbesondere Betriebe aus der verarbeitenden Industrie, darunter viele kleine und mittelständische Unternehmen aus dem Bereich der Sport-, Funktions- und Arbeitsbekleidung sowie der Medizin-Textilien. Das Forschungsvorhaben wird von einem Projektausschuss begleitet, in dem verschiedene Unternehmen und Partner entlang der Produktionskette des Rohstoffs bis zur Materialverwertung vertreten sind.  Das Projekt läuft über zwei Jahre und hat ein Gesamtvolumen von rund 500.000 Euro.