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27.03.2024

KARL MAYER GROUP at SaigonTex 2024

At the upcoming SaigonTex, taking place from April 10th to 13th in Ho Chi Minh City, the KARL MAYER GROUP will present its innovations.

DThe KARL MAYER exhibition for warp preparation is entirely dedicated to sustainability. With BLUEDYE, an innovative machine is introduced, which ensures more sustainability and lower costs in the process of indigo dyeing. Thanks to innovative technological solutions, the amounts of water and chemicals used are significantly reduced. Additionally, less yarn waste is generated. Another innovation for more sustainability is CASCADE, a steam and condensation system that requires significantly less steam in the drying process of sizing and indigo dyeing plants by using a solution for energy recycling that is protected against imitation.

For the warp knitting sector, the group of companies presents its latest technological developments. Highlights include a digital solution from KM.ON for optimizing production management (DPM), innovations for enhancing performance in the HKS segment, and a double raschel machine that enables unique creative multi-color designs in spacer textiles with more colour and new Jacquard techniques.

At the upcoming SaigonTex, taking place from April 10th to 13th in Ho Chi Minh City, the KARL MAYER GROUP will present its innovations.

DThe KARL MAYER exhibition for warp preparation is entirely dedicated to sustainability. With BLUEDYE, an innovative machine is introduced, which ensures more sustainability and lower costs in the process of indigo dyeing. Thanks to innovative technological solutions, the amounts of water and chemicals used are significantly reduced. Additionally, less yarn waste is generated. Another innovation for more sustainability is CASCADE, a steam and condensation system that requires significantly less steam in the drying process of sizing and indigo dyeing plants by using a solution for energy recycling that is protected against imitation.

For the warp knitting sector, the group of companies presents its latest technological developments. Highlights include a digital solution from KM.ON for optimizing production management (DPM), innovations for enhancing performance in the HKS segment, and a double raschel machine that enables unique creative multi-color designs in spacer textiles with more colour and new Jacquard techniques.

"Vietnam is a growing market for textile production, which is gaining importance especially for major international sports brands," says Eddy Ho, Senior Sales Manager at KARL MAYER.
The sales professional expects a large number of visitors, especially from Vietnam, China, Taiwan, and South Korea. SaigonTex is one of the most important textile machinery exhibitions in East Asia, located in close proximity to production centres. Vietnam is, in turn, the second most important market for the KARL MAYER GROUP after China. It benefits from increasing foreign direct investments in textile production from China, Taiwan, and South Korea.

Source:

KARL MAYER GROUP

Seite 4 von 5 Schematische Darstellung der von Kelheim und Gebr. Otto entwickelten Periodenunterwäsche. Grafik Kelheim Fibres
Seite 4 von 5 Schematische Darstellung der von Kelheim und Gebr. Otto entwickelten Periodenunterwäsche.
27.03.2024

Techtextil: Kelheim Fibres und Gebr. Otto präsentieren nachhaltige Periodenunterwäsche

Zur Techtextil, die Ende April 2024 in Frankfurt stattfindet, werden die Unternehmen Kelheim Fibres und Gebr. Otto ihr gemeinsames Konzept präsentieren, das Periodenunterwäsche nachhaltiger und leistungsfähiger macht. Auf dem BW-i-Gemeinschaftsstand bzw. auf dem Gemeinschaftsstand des IVGT zeigen die Innovationspartner ihre Lösung einer Periodenunterwäsche aus biobasierten Materialien, die sich durch Performancewerte hervorsticht. Die verschiedenen Viskosespezialfasern, die dabei zum Einsatz kommen, stammen von Kelheim. In der jeweils passenden Zusammensetzung verspinnt sie Gebr. Otto.

Zur Techtextil, die Ende April 2024 in Frankfurt stattfindet, werden die Unternehmen Kelheim Fibres und Gebr. Otto ihr gemeinsames Konzept präsentieren, das Periodenunterwäsche nachhaltiger und leistungsfähiger macht. Auf dem BW-i-Gemeinschaftsstand bzw. auf dem Gemeinschaftsstand des IVGT zeigen die Innovationspartner ihre Lösung einer Periodenunterwäsche aus biobasierten Materialien, die sich durch Performancewerte hervorsticht. Die verschiedenen Viskosespezialfasern, die dabei zum Einsatz kommen, stammen von Kelheim. In der jeweils passenden Zusammensetzung verspinnt sie Gebr. Otto.

Rund 15.000 Produkte zur Monatshygiene verbraucht eine Frau durchschnittlich in ihrem Leben. Dabei handelt es sich hauptsächlich um Einwegprodukte, durch die viele Tonnen Müll entstehen, und deren Plastikkomponenten bis zu 500 Jahre brauchen, bis sie – nachdem sie in immer kleinere und kleinste Teile zerfallen sind - abgebaut sind. Produkte zur weiblichen Monatshygiene, Einweg- wie Mehrwegprodukte, nachhaltiger zu gestalten, ist seit einigen Jahren Trend. In diese Kategorie gehören nicht nur biologisch abbaubare Einwegprodukte, sondern auch waschbare Periodenslips, die etablierte Wäschehersteller ebenso wie Start-ups anbieten.

Die Periodenunterwäsche ist aus mehreren Lagen mit unterschiedlichen Funktionen aufgebaut –das Topsheet muss Flüssigkeit schnell aufnehmen und vom Körper wegleiten, die anschließende Verteilerschicht (Acquisition-Distribution-Layer, ADL) sorgt für eine zügige und ideale Verteilung der Flüssigkeit im Saugkörper. Dieser schließt die Flüssigkeit ein und hält sie in seinem Inneren fest und verhindert so ein mögliches Rücknässen. Das Ergebnis ist ein Prototyp, der bei Schnelligkeit und Kapazität der Flüssigkeitsaufnahme sowie Rücknässung deutlich bessere Werte erzielt als handelsübliche Lösungen.

Source:

Kelheim Fibres

26.03.2024

BVMed-Positionspapier zur Europawahl

Der Bundesverband Medizintechnologie (BVMed) fordert in seinem Positionspapier zur Europawahl am 9. Juni 2024 einen eigenen Gesundheitsausschuss im Europäischen Parlament, um den gestiegenen Stellenwert der Gesundheitsthemen abzubilden. Unter dem Titel „Medizintechnik-Standort Europa stärken“ ist es für den deutschen Medizintechnik-Verband besonders wichtig, dass Europa Lehren aus der Corona-Pandemie zieht, die Resilienz des Gesundheitssystems stärkt und damit die medizinische Versorgung krisenfest gestaltet. „Wir brauchen als MedTech-Branche vor allem einen einheitlichen regulatorischen Rahmen – ohne zusätzliche oder gar weitergehende Standards in den einzelnen Mitgliedsstaaten“, so BVMed-Geschäftsführer und Vorstandsmitglied Dr. Marc-Pierre Möll.

Der Bundesverband Medizintechnologie (BVMed) fordert in seinem Positionspapier zur Europawahl am 9. Juni 2024 einen eigenen Gesundheitsausschuss im Europäischen Parlament, um den gestiegenen Stellenwert der Gesundheitsthemen abzubilden. Unter dem Titel „Medizintechnik-Standort Europa stärken“ ist es für den deutschen Medizintechnik-Verband besonders wichtig, dass Europa Lehren aus der Corona-Pandemie zieht, die Resilienz des Gesundheitssystems stärkt und damit die medizinische Versorgung krisenfest gestaltet. „Wir brauchen als MedTech-Branche vor allem einen einheitlichen regulatorischen Rahmen – ohne zusätzliche oder gar weitergehende Standards in den einzelnen Mitgliedsstaaten“, so BVMed-Geschäftsführer und Vorstandsmitglied Dr. Marc-Pierre Möll.

Um ein widerstandsfähiges Gesundheitssystem zu schaffen, fordert der BVMed attraktive Rahmenbedingungen für lokale Produktion und die Stärkung der Resilienz der Lieferketten. Eine „digitale Bestandsplattform für versorgungskritische Medizinprodukte und Arzneimittel“ könne zudem dazu beitragen, dass kritische Produkte uneingeschränkt zur Verfügung stehen. Sinnvoll sei auch eine „Whitelist für kritische Rohstoffe unter dem Critical Raw Materials Act“. Bei der Erarbeitung von politischen Maßnahmen zur Verbesserung der Effizienz und Integrität von Lieferketten müssen alle relevanten Stakeholder einbezogen werden – „inklusive der Medizintechnikbranche“, heißt es im BVMed-Europapapier.

Beim Thema Nachhaltigkeit spricht sich der MedTech-Verband dafür aus, die Vorgaben des europäischen Green Deals am Wohl der Patient:innen auszurichten. „Neue oder geänderte Regulierungen dürfen niemals die Versorgung von Patient:innen gefährden“, heißt es im Positionspapier. Da Produktänderungen zeit- und ressourcenintensiv sowie in der EU-Medizinprodukte-Verordnung (MDR) streng reguliert seien, benötigen umwelt- und nachhaltigkeitsbezogene Regulierungen, die Auswirkungen auf die Gesundheitsversorgung haben, angemessene Ausnahmeregelungen und Übergangsfristen.

Ein wichtiges Anliegen sind dem BVMed die Verbesserungen der MDR, um einen effizienten regulatorischen Rahmen für Medizinprodukte zu schaffen, der die Patient:innenversorgung gewährleistet. Der BVMed fordert daher unter anderem die Abschaffung der fünfjährigen Re-Zertifizierungs-Pflicht, die Einführung eines Fast-Track-Verfahrens für innovative Produkte, Orphan Devices und Nischenprodukte, die Steigerung der Effizienz, der Transparenz und der Berechenbarkeit des MDR-Systems sowie die Zusammenführung der Verantwortung im System über eine zu schaffende Governance-Struktur. Doppelregulierungen müssten durch die Harmonisierung der Anforderungen in verschiedenen Rechtsakten verhindert werden.

Ein weiterer Schwerpunkt der Positionen des deutschen MedTech-Verbandes ist es, Innovationen voranzutreiben und Digitalisierung zu forcieren. Der Europäische Raum für Gesundheitsdaten (EHDS) lege die Grundlage für den Datenaustausch und die Datennutzung für Unternehmen. Der Artificial Intelligence Act (AI-Act) solle bessere Möglichkeiten für die KI-Entwicklung schaffen, bringe aber auch neue Pflichten für Medizinprodukte mit sich, die effizient mit der bestehenden MDR in Einklang gebracht werden müssten. Der BVMed setzt sich für die Schaffung eines echten Binnenmarkts für digitale Gesundheitslösungen mit europaweiten Zulassungen und einheitlichen Standards für Datensicherheit aus. Der EHDS müsse allen Stakeholdern einen gleichberechtigten mit geringem bürokratischem Aufwand bieten. Außerdem müsste die Interoperabilität von Daten auf der Grundlage von international anerkannten Standards ausgebaut werden – „bei weitgehendem Verzicht auf nationale Besonderheiten bei Datenstandards“.

Schließlich sei es auf europäischer Ebene wichtig, Handel auszubauen, Fachkräfte zu sichern und Exporte zu stärken. Tendenzen der Renationalisierung und des Protektionismus erschwerten Europa die Handelsbeziehungen mit Drittstaaten und sorgen für erhebliche Marktzugangshürden. „Eine offene Handelspolitik ist jedoch für die exportstarke Medizintechnik-Branche ein entscheidender Faktor. Damit die Industrie so stark bleibt, bedarf es zudem der Sicherung des nötigen Fachkräftebedarfes“, heißt es in dem BVMed-Papier.

 

Source:

Bundesverband Medizintechnologie e.V.

STFI: Finalisten im Wettbewerb um Landesbaupreis 2024 (c) STFI
Verleihung des sächsischen Landesbaupreises 2024 in Dresden: Staatsminister Thomas Schmidt überreicht die Anerkennungsurkunden an Vertreter und Vertreterinnen des IHD, des STFI und der Firma Holzbau Meyer GmbH, Stollberg
25.03.2024

STFI: Finalisten im Wettbewerb um Landesbaupreis 2024

Im Rennen um den sächsischen Landespreis „Baupraxis der Zukunft – nachhaltig, innovativ, zirkulär“ gehören zu den zehn Finalisten zwei Entwicklungen, die aus sächsischen Industrieforschungsprojekten erwachsen sind. Zum einen überzeugte das Holz-Textil-Faltwerk die Jury als innovatives Raumkonzept für modulares Arbeiten und Wohnen. Zum anderen fand die Jury Gefallen an einem Hybridbauteil für Holz-Beton-Verbunddecken, bei dem ein biobasiertes Hanffaserkunststofflaminat als Balkenverstärkung größere Spannweiten ermöglicht. Beide Projekte wurden am 8. März 2024 zur Preisverleihung im Rahmen der Baumesse HAUS in Dresden mit einer undotierten Anerkennung gewürdigt.

Im Rennen um den sächsischen Landespreis „Baupraxis der Zukunft – nachhaltig, innovativ, zirkulär“ gehören zu den zehn Finalisten zwei Entwicklungen, die aus sächsischen Industrieforschungsprojekten erwachsen sind. Zum einen überzeugte das Holz-Textil-Faltwerk die Jury als innovatives Raumkonzept für modulares Arbeiten und Wohnen. Zum anderen fand die Jury Gefallen an einem Hybridbauteil für Holz-Beton-Verbunddecken, bei dem ein biobasiertes Hanffaserkunststofflaminat als Balkenverstärkung größere Spannweiten ermöglicht. Beide Projekte wurden am 8. März 2024 zur Preisverleihung im Rahmen der Baumesse HAUS in Dresden mit einer undotierten Anerkennung gewürdigt.

Holz-Textil-Faltwerke
Ein interdisziplinäres Entwicklerteam hat Holz-Textil-Faltwerke (HTF) konzipiert, die temporär zum Zweck des Schallschutzes, Sichtschutzes oder der räumlichen Abgrenzung aufstellbar sind. Die HTF sind selbsttragend und zeichnen sich durch kleines Packvolumen und Leichtbauweise aus. Unter Nutzung der Origami-Mathematik wurden mehrschichtige Holz-Textil-Verbunde entwickelt. Das Textil dient als zweidimensionales Scharnier der fertigen Konstruktion. Auf der Oberseite des Textils ist je nach technischer Anforderung eine entsprechende funktionale Schicht (z. B. Holz- oder Kunststoffelemente) zu fixieren. Dabei wird die Faltkinematik durch die Geometrie der biegesteifen Holzelemente bestimmt. Durch den Verbund aus biegeschlaffen textilen Materialien mit biegesteifen Holzelementen sind Faltbewegungen möglich, die eine selbsttragende Struktur entstehen lassen. Ein wahlweiser Einbau von Funktionselementen erhöht die Schallabsorption und -dämmung. Insgesamt entsteht durch die Origamifaltung von Holz und Textil ein ästhetisches Design. An der Entwicklung waren das Ressort Physik und Bauteile des Instituts für Holztechnologie Dresden gemeinnützige GmbH (IHD), die Hochschule für nachhaltige Entwicklung Eberswalde (HNEE) mit seinem Fachbereich Holzingenieurwesen sowie das Sächsische Textilforschungsinstitut e.V. (STFI) (Chemnitz) beteiligt.
Das IGF-Vorhaben 20946BR der Forschungsvereinigung Trägerverein Institut für Holztechnologie Dresden e.V. (TIHD) wurde unter dem Titel „Akustisch wirksame Origami-Faltwerke mit bedarfsgerecht anpassbarer Raumgeometrie auf Basis von Holz/Textilverbunden“ über die AiF im Rahmen des Programms zur Förderung der Industriellen Gemeinschaftsforschung (IGF) vom Bundesministerium für Wirtschaft und Klimaschutz auf Grund eines Beschlusses des Deutschen Bundestages gefördert

Gro-Coce – Zukunftsfähiges Hybridbauteil aus Holz, Beton und Hanffasern
Zukunftsweisende Materialien bieten die Entwicklungen aus dem Bereich nachwachsender Rohstoffe in Kombination mit biobasierten Harzsystemen. Ein interdisziplinäres Team modifizierte die Herstellungstechnologie von Holz-Beton-Verbunddecken. Das Forschungsprojekt Gro-Coce verfolgte das Ziel, durch die Verbindung nachhaltiger Bauprodukte und -weisen ein innovatives Deckensystem zu entwickeln, welches auf Grundlage der Holz-Beton-Verbundbauweise (HBV-Bauweise) als ökonomische und ökologisch vorteilhafte Alternative zu den momentan vorherrschenden, energie- und ressourcenintensiven Deckenkonstruktionen aus Stahlbeton funktioniert. Das Deckensystem besteht aus Holzstegen, deren Zugzone durch hochleistungsfähige hanffaserbasierte Armierungstextilien verstärkt wird. Dadurch gelingt eine deutliche Reduktion des notwendigen Holzquerschnittes und eine anforderungsgerechtere sowie verantwortungsvollere Nutzung des Querschnitts für alle üblichen Spannweiten des Hoch- und Geschossbaus. Ziel war die Nutzbarmachung bisher nicht erreichter mechanischer Kennwerte der Hanfbastfasern, durch die Entwicklung neuartiger Bastfasergewinnungs- und Aufbereitungsmethoden. Für die Entwicklung des neuartigen Deckensystems kooperierten die Partner Hanffaser Uckermark (Prenzlau), Holzbau Meyer (Stollberg/Erzgebirge), Hochschule für Technik, Wirtschaft und Kultur (Leipzig) sowie das Sächsische Textilforschungsinstitut e.V. (STFI), Fachbereich Web- und Maschenwaren, Verstärkungsstrukturen (Chemnitz). Das Forschungsprojekt ZIM KF4013848KI9 wurde unter dem Titel „Green organic reinforced high performance Timber Concrete Ceilings – Hanffaserkunststoffverstärkte, hochleistungsfähige und ressourceneffiziente Holz-Beton-Verbund-Decken“ über das Zentrale Innovationsprogramm Mittelstand (ZIM) vom Bundesministerium für Wirtschaft und Klimaschutz auf Grund eines Beschlusses des Deutschen Bundestages gefördert.

Source:

Sächsisches Textilforschungsinstitut e.V. (STFI)

(c) TMAS
25.03.2024

TMAS: Microfactory for filter bags in Sweden

ACG Kinna Automatic and ACG Nyström – members of TMAS, the Swedish textile machinery association – have delivered the first microfactory for the production of fully finished filter bags to an international filtration industry customer, in cooperation with JUKI Central Europe.

The microfactory’s configuration is based on two separate interconnecting modules – the Smart Filter Line (SFL) and the Filtermaster 2.0. The SFL handles the fabric feeding from rolls and its folding prior to seam construction, which can either be by automatic sewing, welding or with sewing and taping, depending on specifications. Very rapid changeover of the modular seaming methods can be achieved during product changes. The specific size of the now fully-tubular fabric is then precisely cut to size for each individual unit and further folded ready to be fed into the Filtermaster 2.0. The Filtermaster 2.0 then automatically attaches the reinforcement, bottom and snap rings onto the filter tube with a second Juki sewing head on a robotic arm, to form the fully finished filter bag ready for packaging.

ACG Kinna Automatic and ACG Nyström – members of TMAS, the Swedish textile machinery association – have delivered the first microfactory for the production of fully finished filter bags to an international filtration industry customer, in cooperation with JUKI Central Europe.

The microfactory’s configuration is based on two separate interconnecting modules – the Smart Filter Line (SFL) and the Filtermaster 2.0. The SFL handles the fabric feeding from rolls and its folding prior to seam construction, which can either be by automatic sewing, welding or with sewing and taping, depending on specifications. Very rapid changeover of the modular seaming methods can be achieved during product changes. The specific size of the now fully-tubular fabric is then precisely cut to size for each individual unit and further folded ready to be fed into the Filtermaster 2.0. The Filtermaster 2.0 then automatically attaches the reinforcement, bottom and snap rings onto the filter tube with a second Juki sewing head on a robotic arm, to form the fully finished filter bag ready for packaging.

Filter bags are employed in a wide range of industrial processes and while they may be largely under the radar as products, they represent a pretty significant percentage of overall technical textiles production.
They are used in foundries, smelters, incinerators, asphalt plants and energy production plants. Other key manufacturing fields – often where dust is generated – include the production of timber, textiles, composites, waste handling and minerals, in addition to chemicals, food production, pharmaceuticals, electronics and agriculture.

As a further example of the scale of the industry and the high volumes of fabrics involved, one supplier has delivered a single order of 30,000 filter bags to be used for flue gas cleaning at a European power plant. The bags can also be anywhere up to twelve metres in length and frequently have to be replaced.

Source:

Textile Machinery Association of Sweden

Lenzing: Sustainable geotextiles as glacier protection and jacket (c) UN Nations
22.03.2024

Lenzing: Sustainable geotextiles as glacier protection and jacket

The Lenzing Group has created an innovative concept that contributes to the sustainable protection of our glaciers while inspiring collective action for sustainable practices and a circular economy in the nonwovens and textile value chain. The concept, which was artistically staged by the Italian artist Michelangelo Pistoletto, was presented on March 21, 2024, as part of the International Day of Forests celebrations at the Palais des Nations, the headquarters of the United Nations Office at Geneva (UNOG).

The melting of glaciers is being severely impacted by global warming. Geotextiles are used to protect ice and snow. However, the nonwovens used for this are made of fossil-based fibers, which allow microplastics1 to enter the valley via streams and may enter the food chain through small organisms and animals. Nonwovens made from cellulosic LENZING™ fibers, which are biodegradable at the end of their life cycle and can be completely recycled, are the sustainable solution to this problem.

The Lenzing Group has created an innovative concept that contributes to the sustainable protection of our glaciers while inspiring collective action for sustainable practices and a circular economy in the nonwovens and textile value chain. The concept, which was artistically staged by the Italian artist Michelangelo Pistoletto, was presented on March 21, 2024, as part of the International Day of Forests celebrations at the Palais des Nations, the headquarters of the United Nations Office at Geneva (UNOG).

The melting of glaciers is being severely impacted by global warming. Geotextiles are used to protect ice and snow. However, the nonwovens used for this are made of fossil-based fibers, which allow microplastics1 to enter the valley via streams and may enter the food chain through small organisms and animals. Nonwovens made from cellulosic LENZING™ fibers, which are biodegradable at the end of their life cycle and can be completely recycled, are the sustainable solution to this problem.

The covering of a small area with the new material made from LENZING™ fibers was tested for the first time during a field test on the Stubai Glacier. Four meters of ice were saved from melting. This was confirmed in a study conducted by the University of Innsbruck and the Austrian glacier lift operators on the Stubai Glacier in Tyrol (Austria). In 2023, the pilot project was successfully extended to all Austrian glaciers used by tourists.

Last year, the project was also awarded first place in the prestigious Swiss BIO TOP Awards for wood and material innovations.

Lenzing takes this innovation project as an opportunity to inspire collaborative action towards sustainable practices and circularity in the textile value chain. Together with a network of innovative partners, Lenzing is working on processing geotextiles into new textile fibers giving them a second life as a garment. The use of geotextiles is usually limited to two years, after which the nonwovens would be disposed of. In the first phase of the pilot project, the recycling of nonwovens made for geotextiles use has been successfully tested and a fashionable “Glacier Jacket” has been produced, showcasing that the recycling of geotextiles is viable. Next to Lenzing, the network includes Marchi & Fildi Spa, a specialist in the field of mechanical recycling, the denim fabric manufacturer Candiani Denim and the fashion studio Blue of a Kind.

Robot system (c) STFI
20.03.2024

STFI: Highlights of textile research at Techtextil 2024

STFI will be presenting high-end textile products and solutions at Techtextil 2024. The highlights from current research results and innovations provide an insight into the digitalisation of textile production, show applications for 3D printing and smart technical textiles and provide examples of particularly sustainably designed products as well as innovative approaches for protective and medical textiles.

The central highlight of STFI's presence at Techtextil is a robot system that demonstrates the automated processing of a bobbin frame on a small scale. The pick-and-place application demonstrates camera-supported gripping of the bobbins. The robot is part of the STFI's “Textile Factory of the Future” which demonstrates automation solutions for the textile industry in a laboratory environment.

STFI will be presenting high-end textile products and solutions at Techtextil 2024. The highlights from current research results and innovations provide an insight into the digitalisation of textile production, show applications for 3D printing and smart technical textiles and provide examples of particularly sustainably designed products as well as innovative approaches for protective and medical textiles.

The central highlight of STFI's presence at Techtextil is a robot system that demonstrates the automated processing of a bobbin frame on a small scale. The pick-and-place application demonstrates camera-supported gripping of the bobbins. The robot is part of the STFI's “Textile Factory of the Future” which demonstrates automation solutions for the textile industry in a laboratory environment.

From the field of sustainable products and solutions, a sleeping bag with bio-based and therefore vegan filling material and a natural fibre-based composite element for furniture construction, in which LEDs and capacitive proximity sensors for contactless function control have been applied using embroidery technology, will be on show. Printed heating conductor structures demonstrate current research work for the e-mobility of the future, as the individually controllable seat and interior heating should ultimately reduce weight and save energy compared to conventional heating systems.

While a protective suit for special task forces protects against the dangers of a Molotov cocktail attack, a shin guard and a knee brace with patellar ring illustrate the process combination of 3D printing and UV LED cross-linking. Other highlights from lightweight textile construction include the rib of a vertical rudder of an Airbus A320 and a green snowboard made from recycled carbon fibres.

More information:
STFI Techtextil Smart textiles
Source:

Sächsisches Textilforschungsinstitut e.V. (STFI)

Professor Dr.-Ing. Markus Milwich Photo: DITF
Professor Dr.-Ing. Markus Milwich.
19.03.2024

Markus Milwich represents "Lightweight Design Agency for Baden-Württemberg"

Lightweight design is a key enabler for addressing the energy transition and sustainable economy. Following the liquidation of the state agency Leichtbau BW GmbH, a consortium consisting of the Allianz Faserbasierter Werkstoffe Baden-Württtemberg (AFBW), the Leichtbauzentrum Baden-Württemberg (LBZ e.V. -BW) and Composites United Baden-Württemberg (CU BW) now represents the interests of the lightweight construction community in the State.

The Lightweight Design Agency for Baden-Württemberg is set up for this purpose on behalf of and with the support of the State. The Lightweight Construction Alliance BW is the central point of contact for all players in the field of lightweight construction in the State and acts in their interests at national and international level. Professor Markus Milwich from the German Institutes of Textile and Fiber Research Denkendorf (DITF) represents the agency.

Lightweight design is a key enabler for addressing the energy transition and sustainable economy. Following the liquidation of the state agency Leichtbau BW GmbH, a consortium consisting of the Allianz Faserbasierter Werkstoffe Baden-Württtemberg (AFBW), the Leichtbauzentrum Baden-Württemberg (LBZ e.V. -BW) and Composites United Baden-Württemberg (CU BW) now represents the interests of the lightweight construction community in the State.

The Lightweight Design Agency for Baden-Württemberg is set up for this purpose on behalf of and with the support of the State. The Lightweight Construction Alliance BW is the central point of contact for all players in the field of lightweight construction in the State and acts in their interests at national and international level. Professor Markus Milwich from the German Institutes of Textile and Fiber Research Denkendorf (DITF) represents the agency.

The use of lightweight materials in combination with new production technologies will significantly reduce energy consumption in transportation, the manufacturing industry and the construction sector. Resources can be saved through the use of new materials. As a cross-functional technology, lightweight construction covers entire value chain from production and use to recycling and reuse.

The aim of the state government is to establish Baden-Württemberg as a leading provider of innovative lightweight construction technologies in order to strengthen the local economy and secure high-quality jobs.

Among others, the "Lightweight Construction Alliance Baden-Württemberg" will continue the nationally renowned "Lightweight Construction Day", which acts as an important source of inspiration for a wide range of lightweight construction topics among business and scientific community.

Professor Milwich, an expert with many years of experience and an excellent network beyond the State's borders, has been recruited for this task. In his role, Milwich also represents the state of Baden-Württemberg on the Strategy Advisory Board of the Lightweight Construction Initiative of the Federal Ministry for Economic Affairs and Climate Action, which supports the cross functional-technology and efficient transfer of knowledge between the various nationwide players in lightweight construction and serves as a central point of contact for entrepreneurs nationwide for all relevant questions.

From 2005 to 2020, Professor Milwich headed the Composite Technology research at the DITF, which was integrated into the Competence Center Polymers and Fiber Composites in 2020. He is also an honorary professor at Reutlingen University, where he teaches hybrid materials and composites. "Lightweight design is an essential aspect for sustainability, environmental and resource conservation. I always showcase this in research and teaching and now also as a representative of the lightweight construction community in Baden-Württemberg," emphasizes Professor Milwich.

Source:

Deutsche Institute für Textil- und Faserforschung

15.03.2024

TMAS: Digitised solutions at Techtextil and Texprocess

Members of TMAS – the Swedish textile machinery association – will display technologies in alignment with the theme of digitalisation at the forthcoming Techtextil and Texprocess 2024 exhibitions, taking place in Frankfurt from April 23-26th.

Automatic handling
The fully automated and digitised handling solutions for finished garments, home textiles and furniture of Eton Systems, for example, will be demonstrated at Texprocess.

Designed to increase value-added time in production by eliminating manual transportation and minimising handling, the individually addressable product carriers are fully managed and controlled by the latest ETONingenious™ software. This web based real-time data collection and information system continuously accumulates, processes and makes all production information instantly available to supervisors, quality control personnel and management.

Members of TMAS – the Swedish textile machinery association – will display technologies in alignment with the theme of digitalisation at the forthcoming Techtextil and Texprocess 2024 exhibitions, taking place in Frankfurt from April 23-26th.

Automatic handling
The fully automated and digitised handling solutions for finished garments, home textiles and furniture of Eton Systems, for example, will be demonstrated at Texprocess.

Designed to increase value-added time in production by eliminating manual transportation and minimising handling, the individually addressable product carriers are fully managed and controlled by the latest ETONingenious™ software. This web based real-time data collection and information system continuously accumulates, processes and makes all production information instantly available to supervisors, quality control personnel and management.

Bespoke seams
Svegea will demonstrate its EC 300-XS colarette technology, which is used by garment manufacturers around the world for the production of tubular apparel components such as cuff and neck tapes and other seam reinforcements.

The EC 300-XS collarette cutter on show in Frankfurt is equipped with the latest E-Drive II system providing the operator with a very user-friendly touchscreen, providing full control of the cutting process. An accompanying FA 350 fully automatic roll slitting machine will also be demonstrated.

Digital finishing
At Techtextil meanwhile, Baldwin Technology Co. will provide full details of how its highly digitised TexCoat G4 non-contact spray technology for textile finishing and remoistening not only reduces water, chemicals and energy consumption, but also provides the flexibility to adapt to customer requirements in terms of single and double-sided finishing applications.

TexCoat G4 can reduce water consumption and chemical usage by as much as 50% compared to traditional padding application processes.

Yarn tension
Celebrating its 60th anniversary this year, Eltex will display the latest Eltex EyETM system for the continuous monitoring of yarn tension on warp beams.

The Eltex EyETM eliminates problems when warping, and also in subsequent weaving or tufting processes, monitoring the yarn tension on all positions in real-time and enabling a minimum and maximum allowable tension value it be set. If any yarn’s tension falls outside these values the operator can be warned or the machine stopped.

The Eltex ACT and ACT-R units meanwhile go beyond yarn tension monitoring to actually control yarn tension. This extends the application range greatly. The plug and play system automatically compensates for any differences in yarn tension that arise, for example from irregularities in yarn packages.

Accumulated know-how
Vandewiele Sweden AB benefits from all of the synergies and accumulated know-how of Vandewiele Group, supplying weft yarn feeding and tension control units for weaving looms to the majority of weaving machine manufacturers. It also retrofits its latest technologies to working mills to enable instant benefits in terms of productivity and control.

The company will present its latest X4 yarn feeders with integrated accessory displays (TED) as a new standard, as well as launching its own e-commerce platform – iroonline.com.

The TED function enables weft tension settings to be transferred from one machine to another, enabling a fast start-up the next time the same article is woven. The position of the S-Flex Tensioner is constantly monitored by an internal sensor – even if adjustment is made during power off.

X4 feeders are also available with integrated active tension control (ATC-W) as an option. With the ATC-W active tension control, the required tension is easily set and monitored on the integrated display. Once set, the system constantly regulates itself, ensuring consistent yarn tension during the weaving process which is constantly and accurately measured by the ATC sensor unit, sending a signal to the ATC operator unit resulting in consistently stable yarn tension at the required level.

Source:

TMAS - Swedish textile machinery association

Freudenberg showcases sustainable solutions at Techtextil 2024 (c) Freudenberg Performance Materials
Freudenberg´s sustainable carrier material for green roofs on urban buildings is made from renewable resources
15.03.2024

Freudenberg showcases sustainable solutions at Techtextil 2024

Freudenberg Performance Materials (Freudenberg) is showcasing solutions for the automotive, building, apparel, filtration and packaging industries at this year’s Techtextil in Frankfurt am Main from April 23 – 26.

Sustainable nonwoven for car seats
One innovation highlight at Techtextil is a novel Polyester nonwoven material for car seat padding. Also available as a nonwoven composite with PU foam, it is not only easier for car seat manufacturers to handle during the mounting process, but also ensures better dimensional stability as well as providing soft and flexible padding. It has a minimum 25 percent recycled content, for example, by reusing nonwoven clippings and waste, and is fully recyclable. Full supply chain transparency enables customers to trace and verify the content of the nonwoven and thus ensures a responsible production process. The Freudenberg experts will also be presenting several other nonwoven solutions made of up to 80 percent recycled materials that can be used in car seat manufacturing.

Freudenberg Performance Materials (Freudenberg) is showcasing solutions for the automotive, building, apparel, filtration and packaging industries at this year’s Techtextil in Frankfurt am Main from April 23 – 26.

Sustainable nonwoven for car seats
One innovation highlight at Techtextil is a novel Polyester nonwoven material for car seat padding. Also available as a nonwoven composite with PU foam, it is not only easier for car seat manufacturers to handle during the mounting process, but also ensures better dimensional stability as well as providing soft and flexible padding. It has a minimum 25 percent recycled content, for example, by reusing nonwoven clippings and waste, and is fully recyclable. Full supply chain transparency enables customers to trace and verify the content of the nonwoven and thus ensures a responsible production process. The Freudenberg experts will also be presenting several other nonwoven solutions made of up to 80 percent recycled materials that can be used in car seat manufacturing.

Biocarrier for green roofs
Freudenberg is showcasing a sustainable carrier material for green roofs on urban buildings at the trade fair. The carrier is made from polylactide, i.e. from renewable resources. When filled with soil, it provides a strong foothold to root systems, enabling the growth of lightweight sedum blankets that can be rolled out to provide instant green roofs. These roofs not only help counter urban heat, they also improve stormwater management and regulate indoor temperatures.

From textile waste to padding
The company extended its circular thermal wadding product range with the release of comfortemp® HO 80xR circular, a wadding made from 70 percent recycled polyamide from discarded fishing nets, carpet flooring and industrial plastic. Because polyamide 6, also known as nylon, retains its performance characteristics after multiple recycling processes, the fibers can be used again and again to manufacture performance sporting apparel, leisurewear and luxury garments.

Packaging solutions with various sustainability benefits
Freudenberg is also showcasing products for sustainable packaging and filtration solutions. The long-lasting Evolon® technical packaging series is a substitute for disposable packaging used in the transport of sensitive industrial items such as automotive parts. The material is made from up to 85 percent recycled PET. A further highlight at Techtextil are Freudenberg’s fully bio-based solutions for manufacturing dessicant bags. The binder-free material based on bio-fibers is also industrially compostable.
In addition, the experts will be giving trade fair visitors an insight into Freudenberg’s filtration portfolio.

Source:

Freudenberg Performance Materials

KARL MAYER and Grabher: Competence platform for wearables (c) KARL MAYER GROUP
13.03.2024

KARL MAYER and Grabher: Competence platform for wearables

KARL MAYER has already produced a wide range of electrically conductive warp-knitted items for a wide variety of applications in the TEXTILE-CIRCUIT division of its TEXTILE MAKERSPACE, including a sensor shirt, a gesture control system and a conductive charging station. In order to drive the topic of wearables forward, the textile machine manufacturer has signed a cooperation agreement with the Grabher Group and delivered an MJ 52/1-S to the specialist for high-tech textiles in Lustenau. Managing Director Günter Grabher officially inaugurated the key machine for project work in the smart textiles sector in May 2023.

The machine is involved in various research projects, but is also available for new projects and tasks. The smart textiles competence team at KARL MAYER and Grabher is looking forward to supporting the ideas and work of interested parties also outside the research network with its know-how and the possibilities of the MJ 52/1-S.

KARL MAYER has already produced a wide range of electrically conductive warp-knitted items for a wide variety of applications in the TEXTILE-CIRCUIT division of its TEXTILE MAKERSPACE, including a sensor shirt, a gesture control system and a conductive charging station. In order to drive the topic of wearables forward, the textile machine manufacturer has signed a cooperation agreement with the Grabher Group and delivered an MJ 52/1-S to the specialist for high-tech textiles in Lustenau. Managing Director Günter Grabher officially inaugurated the key machine for project work in the smart textiles sector in May 2023.

The machine is involved in various research projects, but is also available for new projects and tasks. The smart textiles competence team at KARL MAYER and Grabher is looking forward to supporting the ideas and work of interested parties also outside the research network with its know-how and the possibilities of the MJ 52/1-S.

The MJ 52/1 S is also an extremely flexible project machine. The 138″ model in gauge E 28 produces a wide range of warp-knitted fabrics and incorporates conductive material directly into the textile surface - exactly where it is needed and with the structure that is required. The basis for the tailor-made fiber placement is KARL MAYER's string bar technology. The system for controlling the pattern guide bars ensures a fast, established textile production process and a high degree of pattern freedom.

Source:

KARL MAYER GROUP

Baldwin presents spray finishing system at Techtexil (c) Baldwin Technology Company Inc.
13.03.2024

Baldwin presents spray finishing system at Techtexil

Baldwin Technology Co. will join Elmatex GmbH at Techtexil (April 23-26 in Frankfurt, Germany) to demonstrate its TexCoat™ G4 precision spray finishing system.

Baldwin Technology Co. will join Elmatex GmbH at Techtexil (April 23-26 in Frankfurt, Germany) to demonstrate its TexCoat™ G4 precision spray finishing system.

With Baldwin’s system, the chemistry is precisely distributed across the textile surface and is applied only where it is required, on one or both sides of the fabric. The non-contact technology eliminates chemistry dilution in wet-on-wet processes, allowing full control of maintaining consistent chemistry coverage rates. Plus, pad bath contamination is eliminated, and changeovers are only required when there is a change of finish chemistry.
 
Furthermore, the system offers automated speed tracking, fabric-width compensation, and real-time monitoring to track system uptime, performance and chemistry usage, as well as active care alerts.
 
In addition, the TexCoat™ G4 system can process a wide range of low-viscosity water-based chemicals, such as durable water repellents, softeners, antimicrobials, flame retardants and more. Baldwin’s technology utilizes the same chemicals used in the traditional pad bath, and no special auxiliaries are required. The recipe is adjusted by increasing the concentration and reducing the pickup by a corresponding amount, so that the same level of solids is applied.
 
Some applications, such as durable water repellents, are only applied on the face of the fabric, instead of the traditional method of saturation through dipping and squeezing. Drier fabric entering the stenter means lower drying temperatures and faster process speeds. Single-side applications also open up the opportunity to process back-coated or laminated fabrics in a single pass of the stenter, instead of two passes.

Composites production volume in Europe since 2011 (in kt) Graphik AVK – Industrievereinigung Verstärkte Kunststoffe e. V.
Composites production volume in Europe since 2011 (in kt)
06.03.2024

European composites market on the level of 2014

After a long phase of continuous growth, the composites market has seen strong fluctuations since 2018. In 2023, the overall market for composites in Europe fell by 8%.

The current mood on the markets in Germany and Europe is rather negative within the industry. The main drivers are the persistently high energy and raw material prices. Added to this are problems in logistics chains and a cautious consumer climate. A slowdown in global trade and uncertainties in the political arena are fueling the negative sentiment. Despite rising registration figures, the automotive industry, the most important application area for composites, has not yet returned to its pre-2020 volume. The construction industry, the second key application area, is currently in crisis. These factors have already caused the Eu-ropean composites production volume to fall significantly in recent years. There has now been another decline in Europe for 2023.

After a long phase of continuous growth, the composites market has seen strong fluctuations since 2018. In 2023, the overall market for composites in Europe fell by 8%.

The current mood on the markets in Germany and Europe is rather negative within the industry. The main drivers are the persistently high energy and raw material prices. Added to this are problems in logistics chains and a cautious consumer climate. A slowdown in global trade and uncertainties in the political arena are fueling the negative sentiment. Despite rising registration figures, the automotive industry, the most important application area for composites, has not yet returned to its pre-2020 volume. The construction industry, the second key application area, is currently in crisis. These factors have already caused the Eu-ropean composites production volume to fall significantly in recent years. There has now been another decline in Europe for 2023.

Overall development of the composites market
The volume of the global composites market totalled 13 million tons in 2023. Compared to 2022, with a volume of 12.3 million tons, growth was around 5%. In comparison, the European composites production volume fell by 8% in 2023. The total European composites market thus comprises a volume of 2,559 kilotons (kt) after 2,781 kt in 2022.

The market is therefore declining and falling back to the level of 2014. Overall, market momentum in Europe was lower than in the global market. Europe's share of the global market is now around 20%.

As in previous years, development within Europe is not uniform. The differences are due to very different regional core markets, the high variability of the materi-als used, a wide range of different manufacturing processes and widely differing areas of application. Accordingly, there are different regional trends, especially with regard to the individual processes, although there were declines in all re-gions and for almost all processes in 2023. At almost 50% of the market volume, the transportation sector accounts for the largest share of total composites pro-duction in terms of volume. The next two largest areas are the electri-cal/electronics sector and applications in construction and infrastructure.

The entire market report 2023 is available for download: https://www.avk-tv.de/publications.php.

KARL MAYER GROUP: Natural fibre composites and knit to shape products at JEC World 2024 (c) FUSE GmbH
26.02.2024

KARL MAYER GROUP: Natural fibre composites and knit to shape products at JEC World 2024

At this year's JEC World 2024 from 5 to 7 March, KARL MAYER GROUP will be exhibiting with KARL MAYER Technical Textiles and its STOLL Business

One focus of the exhibition will be non-crimp fabrics and tapes made from bio-based yarn materials for the reinforcement of composites.

"While our business with multiaxial and spreading technology for processing conventional technical fibres such as carbon or glass continues to do well, we are seeing increasing interest in the processing of natural fibres into composites. That's why we have a new product in our trade fair luggage for the upcoming JEC World: an alpine ski in which, among other things, hemp fibre fabrics have been used," reveals Hagen Lotzmann, Vice President Sales KARL MAYER Technische Textilien.

The winter sports equipment is the result of a subsidised project. The hemp tapes for this were supplied by FUSE GmbH and processed into non-crimp fabrics on the COP MAX 5 multiaxial warp knitting machine in the KARL MAYER Technical Textiles technical centre.

At this year's JEC World 2024 from 5 to 7 March, KARL MAYER GROUP will be exhibiting with KARL MAYER Technical Textiles and its STOLL Business

One focus of the exhibition will be non-crimp fabrics and tapes made from bio-based yarn materials for the reinforcement of composites.

"While our business with multiaxial and spreading technology for processing conventional technical fibres such as carbon or glass continues to do well, we are seeing increasing interest in the processing of natural fibres into composites. That's why we have a new product in our trade fair luggage for the upcoming JEC World: an alpine ski in which, among other things, hemp fibre fabrics have been used," reveals Hagen Lotzmann, Vice President Sales KARL MAYER Technische Textilien.

The winter sports equipment is the result of a subsidised project. The hemp tapes for this were supplied by FUSE GmbH and processed into non-crimp fabrics on the COP MAX 5 multiaxial warp knitting machine in the KARL MAYER Technical Textiles technical centre.

The STOLL Business Unit will be focussing on thermoplastic materials. Several knit to shape parts with a textile outer surface and a hardened inner surface will be on display. The double-face products can be made from different types of yarn and do not need to be back-moulded for use as side door panels or housing shells, for example. In addition, the ready-to-use design saves on waste and yarn material.

DITF: Biopolymers from bacteria protect technical textiles Photo: DITF
Charging a doctor blade with molten PHA using a hot-melt gun
23.02.2024

DITF: Biopolymers from bacteria protect technical textiles

Textiles for technical applications often derive their special function via the application of coatings. This way, textiles become, for example wind and water proof or more resistant to abrasion. Usually, petroleum-based substances such as polyacrylates or polyurethanes are used. However, these consume exhaustible resources and the materials can end up in the environment if handled improperly. Therefore, the German Institutes of Textile and Fiber Research Denkendorf (DITF) are researching materials from renewable sources that are recyclable and do not pollute the environment after use. Polymers that can be produced from bacteria are here of particular interest.

Textiles for technical applications often derive their special function via the application of coatings. This way, textiles become, for example wind and water proof or more resistant to abrasion. Usually, petroleum-based substances such as polyacrylates or polyurethanes are used. However, these consume exhaustible resources and the materials can end up in the environment if handled improperly. Therefore, the German Institutes of Textile and Fiber Research Denkendorf (DITF) are researching materials from renewable sources that are recyclable and do not pollute the environment after use. Polymers that can be produced from bacteria are here of particular interest.

These biopolymers have the advantage that they can be produced in anything from small laboratory reactors to large production plants. The most promising biopolymers include polysaccharides, polyamides from amino acids and polyesters such as polylactic acid or polyhydroxyalkanoates (PHAs), all of which are derived from renewable raw materials. PHAs is an umbrella term for a group of biotechnologically produced polyesters. The main difference between these polyesters is the number of carbon atoms in the repeat unit. To date, they have mainly been investigated for medical applications. As PHAs products are increasingly available on the market, coatings made from PHAs may also be increasingly used in technical applications in the future.

The bacteria from which the PHAs are obtained grow with the help of carbohydrates, fats and an increased CO2 concentration and light with suitable wavelength.

The properties of PHA can be adapted by varying the structure of the repeat unit. This makes polyhydroxyalkanoates a particularly interesting class of compounds for technical textile coatings, which has hardly been investigated to date. Due to their water-repellent properties, which stem from their molecular structure, and their stable structure, polyhydroxyalkanoates have great potential for the production of water-repellent, mechanically resilient textiles, such as those in demand in the automotive sector and for outdoor clothing.

The DITF have already carried out successful research work in this area. Coatings on cotton yarns and fabrics made of cotton, polyamide and polyester showed smooth and quite good adhesion. The PHA types for the coating were both procured on the open market and produced by the research partner Fraunhofer IGB. It was shown that the molten polymer can be applied to cotton yarns by extrusion through a coating nozzle. The molten polymer was successfully coated onto fabric using a doctor blade. The length of the molecular side chain of the PHA plays an important role in the properties of the coated textile. Although PHAs with medium-length side chains are better suited to achieving low stiffness and a good textile handle, their wash resistance is low. PHAs with short side chains are suitable for achieving high wash and abrasion resistance, but the textile handle is somewhat stiffer.

The team is currently investigating how the properties of PHAs can be changed in order to achieve the desired resistance and textile properties in equal measure. There are also plans to formulate aqueous formulations for yarn and textile finishing. This will allow much thinner coatings to be applied to textiles than is possible with molten PHAs.

Other DITF research teams are investigating whether PHAs are also suitable for the production of fibers and nonwovens.

Source:

Deutsche Institute für Textil- und Faserforschung (DITF)

adidas: Study on effect of pressure in sports (c) adidas AG
19.02.2024

adidas: Study on effect of pressure in sports

Under adidas’ ambition to help athletes overcome high pressure moments in sport, it has teamed up with leading sport neuroscientists, neuro11, to understand the impact it has within a game of football, basketball, and golf during penalty shootouts, high-stake putts and must-make free-throws.

Working with Emiliano Martínez, Ludvig Åberg, Nneka Ogwumike, Rose Zhang, and Stina Blackstenius, as well as amateurs in the game, adidas and neuro11 delved into their minds to identify and analyse where pressure peaks, to help athletes across the globe to better understand it.

Understanding from this study that grassroots athletes and their elite counterparts experience similarly intense levels of pressure in the biggest sporting moments - but elite athletes were up to 40% more effective at managing pressure during these moments1 - a toolbox of techniques has been developed, built from the specific findings, to assist next-gen athletes in managing and overcoming the feeling within their game.

Under adidas’ ambition to help athletes overcome high pressure moments in sport, it has teamed up with leading sport neuroscientists, neuro11, to understand the impact it has within a game of football, basketball, and golf during penalty shootouts, high-stake putts and must-make free-throws.

Working with Emiliano Martínez, Ludvig Åberg, Nneka Ogwumike, Rose Zhang, and Stina Blackstenius, as well as amateurs in the game, adidas and neuro11 delved into their minds to identify and analyse where pressure peaks, to help athletes across the globe to better understand it.

Understanding from this study that grassroots athletes and their elite counterparts experience similarly intense levels of pressure in the biggest sporting moments - but elite athletes were up to 40% more effective at managing pressure during these moments1 - a toolbox of techniques has been developed, built from the specific findings, to assist next-gen athletes in managing and overcoming the feeling within their game.

Covering in-depth detail on what pressure looks like within each sport, how it has been proven to impact specific in-game moments, the brain zones that neuro11’s state-of-the-art brain technology measures and the main insights from each athlete’s training session, each report sets out to support all athletes in accessing the optimal zone - the brain state in which they perform at their best.

Rounded off with science-backed tips that reveal the optimal area of a goal to strike a penalty, how to use time to regain focus before netting a free throw, as well as the impact of dwell time on putting in golf – the guides are shaped around enhancing mental focus during some of the most pressured moments across sport.

1 Findings captured during athlete training sessions, as part of adidas SS24 Brand Campaign, in collaboration with neuro11 (November ’23- January ’24). Study carried out with Emiliano Martínez, Ludvig Åberg, Nneka Ogwumike, Rose Zhang, and Stina Blackstenius, in addition to 5 grassroot athletes.

Source:

adidas AG

Heinrich GLAESER: Begrünter Altkleidersammelcontainer im Finale des Wettbewerbs „Die Lieferkette lebt“ (c) Heinrich GLAESER Nachf. GmbH
Der begrünte Altkleidersammelcontainer „Greenbox“ von Heinrich GLAESER
19.02.2024

Heinrich GLAESER: Begrünter Altkleidersammelcontainer im Finale des Wettbewerbs „Die Lieferkette lebt“

Heinrich GLAESER ist seit Gründung im Jahr 1888 auf Textilrecycling und Textilverwertung spezialisiert. Mit dem Ziel, Ressourcen zu schonen und Wertstoffkreisläufe zu schaffen, sammelt das Unternehmen Alttextilien und führt sie dem Upcycling zu. Mit der Idee, seine Altkleidercontainer für mehr Biodiversität zu begrünen, hat es das Unternehmen ins Finale des vom Bundesministerium für Umwelt, Naturschutz, nukleare Sicherheit und Verbraucherschutz (BMVU) geförderten Unternehmenswettbewerbs „Die Lieferkette lebt“ geschafft.

Mit dem Wettbewerb „Die Lieferkette lebt“ werden alljährlich Unternehmenskonzepte und -aktivitäten entlang der Lieferkette zur Erhaltung der biologischen Vielfalt ausgezeichnet. Heinrich GLAESER hat sich im Herbst 2023 erstmals für den BMVU geförderten Preis beworben und schaffte es unter die Top 10. Die Jury nominierte die in das textile Kreislaufkonzept des Unternehmens eingebundenen „Greenbox“ unter die innovativsten Ideen. Die Greenbox ist ein Altkleidersammelcontainer, dessen Dachfläche begrünt ist. Diese blüht fast das ganze Jahr und bietet Insekten wie Bienen in städtischen Asphaltwüsten eine Anlaufstelle für die Nahrungsaufnahme.

Heinrich GLAESER ist seit Gründung im Jahr 1888 auf Textilrecycling und Textilverwertung spezialisiert. Mit dem Ziel, Ressourcen zu schonen und Wertstoffkreisläufe zu schaffen, sammelt das Unternehmen Alttextilien und führt sie dem Upcycling zu. Mit der Idee, seine Altkleidercontainer für mehr Biodiversität zu begrünen, hat es das Unternehmen ins Finale des vom Bundesministerium für Umwelt, Naturschutz, nukleare Sicherheit und Verbraucherschutz (BMVU) geförderten Unternehmenswettbewerbs „Die Lieferkette lebt“ geschafft.

Mit dem Wettbewerb „Die Lieferkette lebt“ werden alljährlich Unternehmenskonzepte und -aktivitäten entlang der Lieferkette zur Erhaltung der biologischen Vielfalt ausgezeichnet. Heinrich GLAESER hat sich im Herbst 2023 erstmals für den BMVU geförderten Preis beworben und schaffte es unter die Top 10. Die Jury nominierte die in das textile Kreislaufkonzept des Unternehmens eingebundenen „Greenbox“ unter die innovativsten Ideen. Die Greenbox ist ein Altkleidersammelcontainer, dessen Dachfläche begrünt ist. Diese blüht fast das ganze Jahr und bietet Insekten wie Bienen in städtischen Asphaltwüsten eine Anlaufstelle für die Nahrungsaufnahme.

„Seit unserer Unternehmensgründung im Jahr 1888 beschäftigen wir uns mit der Kreislaufführung von Textilien. Die Anfänge gehen auf das Einsammeln von Produktionsabfällen aus der schwäbischen Textilindustrie und die Wiederaufbereitung zu hochwertigen Fasern zurück. Im Lauf der Zeit wurde das Geschäft um das Einsammeln von Altkleidern in unseren eigenen Sammelcontainern und um vielseitige Wertkreisläufe erweitert. Mit der Entwicklung unserer Geotextilien für Begrünung, Erosions- und Pflanzenschutz aus dem GLAESERgreen-Portfolio wurde die Idee geboren, beide Konzepte miteinander zu verbinden. So entstand die „greenbox“, unser begrünter Altkleidersammelbehälter“, erklärt Eberhard Brack, Geschäftsführer von Heinrich GLAESER.

SiWerTEX (c) Hochschule Niederrhein
Projektleiterin Prof. Dr. Maike Rabe (l.) mit den FTB-Mitarbeiterinnen Dr. Anna Missong und Alexandra Glogowsky
09.02.2024

SiWerTEX erforscht simultane Rückgewinnung von Faserpolymeren und Wertstoffen

Textil-Recycling ist eine der großen Herausforderungen unserer Zeit. Aktuell wird der Großteil der gebrauchten Kleidung (über 85 %) thermisch verwertet oder landet auf Deponien. Ein deutlich kleinerer Anteil wird als Second-Hand Kleidung in Entwicklungsländer verschifft. Lediglich weniger als ein Prozent der Kleidung wird recycelt und anschließend wieder zu Kleidung verarbeitet.

Textilien zu recyceln ist kompliziert. Für Sammlung und Sortierung der Altkleider gibt es noch keine etablierten Systeme. Mechanische Verfahren zur Rückgewinnung von Fasern resultieren häufig in einer schlechteren Qualität der textilen Produkte und chemische Verfahren sind technisch kaum entwickelt, sowie wirtschaftlich noch nicht attraktiv genug. Dies gilt auch für das weltweit am häufigste produzierte synthetische Textilfasermaterial Polyester, das aus dem gleichen Material wie PET Flaschen hergestellt wird. Das derzeit in der Textil- und Bekleidungsindustrie genutzte recycelte PET (rPET) stammt fast ausschließlich aus recycelten PET-Flaschen.

Textil-Recycling ist eine der großen Herausforderungen unserer Zeit. Aktuell wird der Großteil der gebrauchten Kleidung (über 85 %) thermisch verwertet oder landet auf Deponien. Ein deutlich kleinerer Anteil wird als Second-Hand Kleidung in Entwicklungsländer verschifft. Lediglich weniger als ein Prozent der Kleidung wird recycelt und anschließend wieder zu Kleidung verarbeitet.

Textilien zu recyceln ist kompliziert. Für Sammlung und Sortierung der Altkleider gibt es noch keine etablierten Systeme. Mechanische Verfahren zur Rückgewinnung von Fasern resultieren häufig in einer schlechteren Qualität der textilen Produkte und chemische Verfahren sind technisch kaum entwickelt, sowie wirtschaftlich noch nicht attraktiv genug. Dies gilt auch für das weltweit am häufigste produzierte synthetische Textilfasermaterial Polyester, das aus dem gleichen Material wie PET Flaschen hergestellt wird. Das derzeit in der Textil- und Bekleidungsindustrie genutzte recycelte PET (rPET) stammt fast ausschließlich aus recycelten PET-Flaschen.

Forscher:innen des Forschungsinstituts für Textil- und Bekleidung (FTB) der Hochschule Niederrhein und des Instituts für Chemische und Thermische Verfahrenstechnik (ICTV) der Technischen Universität Braunschweig nehmen sich im Projekt SiWerTEX den Hürden der simultanen Rückgewinnung von Monomeren und werthaltigen Zuschlagsstoffen aus dem Recycling von Polyestertextilien an. Das Bundesministerium für Wirtschaft und Klimaschutz finanziert im Rahmen der Industriellen Gemeinschaftsforschung (IGF) die Entwicklungsarbeit der Wissenschaftler:innen unter der Leitung von Professorin Dr.-Ing. Maike Rabe (FTB) und Professor. Dr.-Ing. Stephan Scholl (ICTV).

Zusammen mit deutschen Textilherstellern und Textilausrüstern wollen die Wissenschaftler:innen ein chemisches Verfahren zum PET- bzw. Polyesterrecycling, weiterentwickeln. Eine große Herausforderung stellt dabei die Vielfalt von Ausrüstungsmitteln und Additiven dar, mit denen Kleidung und technische Textilien ausgestattet sind: sie sind gefärbt, bedruckt und mit Flammschutz- oder Weichgriffmitteln ausgerüstet.

Untersucht wird im Projekt nicht nur, wie dies beim Recycling effektiv entfernt werden kann, sondern auch, ob die Additive als Wertstoffe zurückgewonnen werden können. Der Fokus wird in SiWerTEX auf die Entfernung von Farbstoffen und die Rückgewinnung des in Flammschutzmitteln enthaltenen Phosphors gerichtet. Die Erkenntnisse sollen helfen, Textilien von Beginn an so zu produzieren, dass ein späteres Recycling möglich wird.

Für die Textil-Unternehmen werden zum Ende des Projektes Handlungsempfehlungen für recyclingfreundliche Färb- und Ausrüstungsprodukte herausgegeben werden können.

Testfahrt im Erzgebirge (c) silbaerg GmbH
09.02.2024

Grünes Snowboard mit JEC Innovation Award ausgezeichnet

Naturfasern und Rezyklate sind die Grundlage der neuesten Produktlinie von silbaerg Snowboards. silbaerg fertigt seit 2011 hochwertige Snowboards mittels patentierter A.L.D.-tech®. A.L.D. steht für anisotropic layer design und ermöglicht eine bisher ungesehene Anpassungsfähigkeit an verschiedene Fahrsituationen.  

Handgefertigte A.L.D.tech®-Lagen umgeben den Holzkern und nicht, wie bei anderen Anbietern üblich, klassische industriell gefertigte Bi-, Tri- oder Quadraxialgelege. Bereits 2015 wurden dabei erstmals Naturfasern in Form von Tapes verwendet.

Naturfasern und Rezyklate sind die Grundlage der neuesten Produktlinie von silbaerg Snowboards. silbaerg fertigt seit 2011 hochwertige Snowboards mittels patentierter A.L.D.-tech®. A.L.D. steht für anisotropic layer design und ermöglicht eine bisher ungesehene Anpassungsfähigkeit an verschiedene Fahrsituationen.  

Handgefertigte A.L.D.tech®-Lagen umgeben den Holzkern und nicht, wie bei anderen Anbietern üblich, klassische industriell gefertigte Bi-, Tri- oder Quadraxialgelege. Bereits 2015 wurden dabei erstmals Naturfasern in Form von Tapes verwendet.

silbaerg setzt auf den Einsatz regionaler Produkte. So kommen Hanffasertapes von Sachsenleinen GmbH (Markkleeberg, Sachsen) zum Einsatz, deren Rohstoff seinen Ursprung auf den Feldern zwischen Chemnitz und Leipzig hat. Für die Versteifung der Boards werden weiterhin Carbonfasertapes benötigt. Hier greift silbaerg auf Forschungsergebnisse des Sächsischen Textilforschungsinstitutes e. V. (STFI) in Chemnitz zurück: Carbonfaserabfälle von silbaerg werden in Form von Recyclingvliesstoffen wiedereingesetzt. Die Verschnittreste, die bei silbaerg in der Produktion anderer Boards anfallen, werden am STFI auf der Anlagentechnik des Zentrums für Textilen Leichtbau aufbereitet und zu Carbonfaservliesstoffen verarbeitet. Diese werden anschließend zu Carbonfasertapes konfektioniert und dienen zusammen mit Hanffasertapes als Verstärkungsstruktur im grünen Snowboard, die damit absolut made in Saxony sind.

Aktuell werden erste Boards von silbaerg-Teamfahrern im Schnee getestet. Diese Testboards nutzen ein neues biobasiertes Harzsystem der bto-epoxy GmbH (Amstetten, Österreich), welches einen Bio-Anteil von 31 % im Harz und 54 % im Härter aufweist. Es ist geplant, die neue Produktlinie noch im Jahr 2024 auf den Markt zu bringen.  

Durch den Einsatz von Hanffasern und recycelten Carbonfasern und die damit verbundene Substitution von Primärmaterial werden Ziele für eine nachhaltige Entwicklung erfüllt. Durch die Nutzung von hauseigenen Rezyklaten lässt sich zudem die Abfallmenge von Carbonfasern im Unternehmen um ca. 75 % reduzieren. Welchen Einfluss dies auf die LCA der Produkte hat, wird aktuell berechnet. 

Source:

Sächsisches Textilforschungsinstitut e.V. (STFI)

07.02.2024

RadiciGroup’s roadmap to a sustainable future

“From Earth to Earth”: The new plan defines goals and concrete actions in Environmental, Social and Governance (ESG) areas to foster value creation for all stakeholders and put new sustainability regulatory requirements at the centre of attention.

A project, designed to enhance RadiciGroup's transparency and commitment to develop a responsible business along its entire value chain from an economic, social and environmental perspective and focus on the ever more widespread and stringent sustainability regulatory requirements. These are the features and goals of the Sustainability Plan presented by the Group and called "From Earth to Earth", precisely to emphasize the intent to focus on the Earth and future generations.

“From Earth to Earth”: The new plan defines goals and concrete actions in Environmental, Social and Governance (ESG) areas to foster value creation for all stakeholders and put new sustainability regulatory requirements at the centre of attention.

A project, designed to enhance RadiciGroup's transparency and commitment to develop a responsible business along its entire value chain from an economic, social and environmental perspective and focus on the ever more widespread and stringent sustainability regulatory requirements. These are the features and goals of the Sustainability Plan presented by the Group and called "From Earth to Earth", precisely to emphasize the intent to focus on the Earth and future generations.

In the context of a complex and constantly changing scenario, the Group has therefore decided to capitalize on the goals achieved and look beyond them with a plan defining the medium-term targets and the actions to be taken to fulfil them and covering all areas considered to be "material”, i.e., relevant from the point of view of ESG and financial risks, opportunities and impacts. Indeed, the ultimate goal of "From Earth to Earth" is to support business continuity and the growth of the company and all its stakeholders.

The project was the result of a multi-year collaboration with Deloitte, which contributed an external and objective viewpoint on the definition of the material targets and themes. However, it was not an armchair exercise, but the result of an extensive listening process involving internal and external stakeholders, all of whom were sustainability experts who helped define a shortlist of strategic themes for both the Group and its main stakeholders. These issues were then analysed in detail using working tables on the different themes to identify the objectives in Environmental, Social and Governance areas and the related concrete actions needed to achieve them, in line with the European decarbonization and energy transition policies and the
United Nations Sustainable Development Goals, a global blueprint for sustainable growth.

In particular, RadiciGroup’s environmental goals include: a 20% increase and differentiation in renewable source electricity consumption, an 80% reduction in total direct greenhouse gas emissions by 2030 compared to 2011, attention to water consumption to limit the impact on local communities and biodiversity, the extension of Life Cycle Assessment (LCA) methodology to measure the environmental impact of 70% of the products (in terms of weight) manufactured by the entire Group, collaboration among the various actors in the supply chain from an ecodesign perspective and the search for increasingly more sustainable and circular packaging solutions.