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

Moncler launches Grenoble collection with Dyneema® Composite Fabric

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

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

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

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

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

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

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

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

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

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

Logo Archroma (c) Archroma
06.11.2020

Archroma announces 20% price increase for its fluorochemical range

Archroma, a global leader in specialty chemicals towards sustainable solutions, today announced an increase of up to 20% in the selling prices of its Nuva® N and Fluowet® fluorocarbon polymers.

Fluorocarbon polymers are typically used in essential applications where a water and/or oil barrier is needed, such as personal protective equipment (PPE) for health professionals, or other technical textiles.

As a global leader in the area of repellency treatments, we have the responsibility to develop and produce products with the highest level of sustainability – economically and ecologically.

The price increase has become necessary to support the increasing regulatory and other costs, as well as ongoing investments that Archroma continuously makes in its own manufacturing technology and process, to produce fluorochemicals in the safest possible way for the consumer and the environment.

The price increase will be effective from November 16, 2020, in all regions and markets, for all new orders and as contracts allow.

 

® Trademarks of Archroma registered in many countries

Archroma, a global leader in specialty chemicals towards sustainable solutions, today announced an increase of up to 20% in the selling prices of its Nuva® N and Fluowet® fluorocarbon polymers.

Fluorocarbon polymers are typically used in essential applications where a water and/or oil barrier is needed, such as personal protective equipment (PPE) for health professionals, or other technical textiles.

As a global leader in the area of repellency treatments, we have the responsibility to develop and produce products with the highest level of sustainability – economically and ecologically.

The price increase has become necessary to support the increasing regulatory and other costs, as well as ongoing investments that Archroma continuously makes in its own manufacturing technology and process, to produce fluorochemicals in the safest possible way for the consumer and the environment.

The price increase will be effective from November 16, 2020, in all regions and markets, for all new orders and as contracts allow.

 

® Trademarks of Archroma registered in many countries

Source:

Archroma / EMG

Logo Rieter (c) Rieter
05.11.2020

Strategic Partnership Between Rieter and WW Systems

  • License agreement concluded for promising technology
  • Integration into the digital spinning suite ESSENTIAL
  • Implementation of digital strategy further advanced

The Rieter Group concludes a license agreement with WW Systems on November 5, 2020 and will integrate the Brazilian company's promising product into its digital spinning suite ESSENTIAL. "OptCotton" from WW Systems offers the only software system worldwide that enables an even blend of cotton for the spinning process. With this cooperation, Rieter is taking an important step forward in implementing its digital strategy and offering its customers further added value in yarn production.

  • License agreement concluded for promising technology
  • Integration into the digital spinning suite ESSENTIAL
  • Implementation of digital strategy further advanced

The Rieter Group concludes a license agreement with WW Systems on November 5, 2020 and will integrate the Brazilian company's promising product into its digital spinning suite ESSENTIAL. "OptCotton" from WW Systems offers the only software system worldwide that enables an even blend of cotton for the spinning process. With this cooperation, Rieter is taking an important step forward in implementing its digital strategy and offering its customers further added value in yarn production.

"OptCotton" eliminates variations in quality between cotton blends that are being prepared for the spinning process. In this way, standardized quality yarn can be produced efficiently in the spinning process. From the arrival of the bales in the warehouse to their use in the blowroom line, “OptCotton” manages the entire blending process with no need for categorization. This results in increased efficiency in storage and logistics as well as machine performance.

Integration into the digital spinning suite ESSENTIAL
By integrating this solution, Rieter strengthens its digital spinning suite ESSENTIAL. Access to bale-related fiber data and raw material information opens up new possibilities for controlling the spinning mill. In combination with the existing modules ESSENTIALbasic, ESSENTIALmonitor, ESSENTIALmaintain and ESSENTIALpredict, this optimizes the entire spinning process and raises digital intelligence to a new level.

Source:

Rieter Management AG

vombaur: Composites for Aviation and Automotive (c) vombaur
Pioneering tech tex
04.11.2020

vombaur: Composites for Aviation and Automotive

  • Composite textiles for modern mobility
  • Extremely lightweight, high tensile components by vombaur

In the snow, on a plane, in an electric vehicle or on a bicycle: no matter where and how we are on the road – composite textiles by vombaur ensure that we make good progress. With materials that are both extremely light and extremely reliable.

Lightweight components for modern mobility
Modern mobility relies on high-tech lightweight components Narrow textiles by vombaur are woven from high-performance fibres. On looms that are specially made for particularly demanding composite textiles: the textile company uses special machines to produce high-tech woven tapes with closed selvedges and elasticated UD tubulars that retain their 0° orientation over the entire length of the component – regardless of the diameter. Since they do not exhibit undesired break points caused by seams or welding, they not only have a particularly high bursting strength, they are also extremely reliable and durable.

  • Composite textiles for modern mobility
  • Extremely lightweight, high tensile components by vombaur

In the snow, on a plane, in an electric vehicle or on a bicycle: no matter where and how we are on the road – composite textiles by vombaur ensure that we make good progress. With materials that are both extremely light and extremely reliable.

Lightweight components for modern mobility
Modern mobility relies on high-tech lightweight components Narrow textiles by vombaur are woven from high-performance fibres. On looms that are specially made for particularly demanding composite textiles: the textile company uses special machines to produce high-tech woven tapes with closed selvedges and elasticated UD tubulars that retain their 0° orientation over the entire length of the component – regardless of the diameter. Since they do not exhibit undesired break points caused by seams or welding, they not only have a particularly high bursting strength, they are also extremely reliable and durable.

Challenging applications
"From snowboards to aerospace – the applications for our composite textiles are demanding; the mechanical, chemical and thermal requirements are extreme," explains COO Christoph Schliefer. "As a development partner, we at vombaur are therefore often involved in product development at an early stage. We specify our woven tapes and tubulars individually for each project to suit the specific task at hand."

High quality raw materials, wide variety of geometries
The variety of shapes is virtually unlimited. vombaur manufactures 3D fabrics for composites in individual special shapes from carbon, aramid, glass or hybrids. Curves, edges, tubulars, spiral fabrics – the shape of the 3D fabrics, like the material itself, depends entirely on the task at hand. Powder or non-woven coatings create additional important properties.

Pioneering tech tex
"Developments in the field of modern mobility are happening at a rapid pace," emphasizes Schliefer. "With our composite textiles for extremely lightweight and high tenacity components, we at vombaur are also pushing these developments forward."

04.11.2020

DyStar Exhibits at China Interdye 2020

Shanghai, China - DyStar, a leading specialty chemical company with a heritage of more than a century in product development and innovation will exhibit in the 20th China International Dyestuff Industry, Pigments and Textile Chemicals Exhibition - China Interdye 2020. DyStar will showcase the latest product innovations at Hall 1 booth #A330.

The three-day annual event will be taking place at Shanghai World Expo Exhibition & Convention Center (SWEECC) and opens doors on 8th November. DyStar’s managers will be onsite to support visitors from production houses, manufacturers, and Brands and Retailers with essential information, helping them to make meaningful and notable decisions based on tangible benefits such as reduction of water, waste and energy consumption, thereby improving their end-products and quality.

Shanghai, China - DyStar, a leading specialty chemical company with a heritage of more than a century in product development and innovation will exhibit in the 20th China International Dyestuff Industry, Pigments and Textile Chemicals Exhibition - China Interdye 2020. DyStar will showcase the latest product innovations at Hall 1 booth #A330.

The three-day annual event will be taking place at Shanghai World Expo Exhibition & Convention Center (SWEECC) and opens doors on 8th November. DyStar’s managers will be onsite to support visitors from production houses, manufacturers, and Brands and Retailers with essential information, helping them to make meaningful and notable decisions based on tangible benefits such as reduction of water, waste and energy consumption, thereby improving their end-products and quality.

DyStar’s sustainable solutions can further optimize productions, processes, and reduce costs. Some of these products and concepts are highlighted at the event as follows:
•    Recent launch of Cadira® Polyamide and Cadira Polyester/Cellulosic Exhaust
•    Total collection of eleven Cadira® modules
•    High Fast Dianix® XF2 Range
•    Sera® Wash M-VFN
•    Levafix® CA and Remazol® SAM offer

Despite a year full of global economic challenges, with the supply chain and stakeholders heavily strained by the global pandemic, DyStar is determined to support the industry and its customers. They can benefit from our legacy of innovations and product offerings, so that they can continue to drive sustainability and growth in their respective domains, contributing in a responsible and yet sustainable manner for a cleaner future.

Oerlikon (c) Oerlikon
29.10.2020

Oerlikon: Less waste with the Smart Factory

A typical manmade fiber system produces well over 600 tons of yarn a day. This equals in around 700 winders in filament yarn production or 3 systems in staple fiber production. These figures show just how important smooth production processes are.

If an error creeps into the process at any point, the daily waste increases dramatically. It is obvious that all yarn manufacturers want to prevent this happening to ensure their production facilities operate efficiently. Here, digitalization provides invaluable support. A Smart Factory that networks all steps within the production chain – including all auxiliary processes – identifies and reports quality deviations at an early stage. Yarn manufacturers can quickly intervene in the production process and hence avoid generating waste.

A typical manmade fiber system produces well over 600 tons of yarn a day. This equals in around 700 winders in filament yarn production or 3 systems in staple fiber production. These figures show just how important smooth production processes are.

If an error creeps into the process at any point, the daily waste increases dramatically. It is obvious that all yarn manufacturers want to prevent this happening to ensure their production facilities operate efficiently. Here, digitalization provides invaluable support. A Smart Factory that networks all steps within the production chain – including all auxiliary processes – identifies and reports quality deviations at an early stage. Yarn manufacturers can quickly intervene in the production process and hence avoid generating waste.

Digital solutions ensures process reliability
And the Smart Factory is also the focus of Oerlikon Manmade Fibers. Here, it comprises considerably more than the Plant Operation Center, a system that has been well-established within the market for many years now. “This is about absolute transparency and traceability. At the end of the process, yarn manufacturers are able to track at which position its finished textured yarn packages were spun and even have information on the processed granulate and the specific production conditions”, comments Ivan Gallo, responsible for digital products at Oerlikon Manmade Fiber. In this way, the Smart Factory ensures process reliability, above all. The data are automatically entered into the system and the product assessed at each stage of yarn production at which values and data are recorded – such as during visual inspection and when weighing. In the event of anomalies in the intermediate laboratory and quality checks, this allows yarn producers to intervene in the production process and correct these anomalies.

Information on the chip feeding, on the drying and on the masterbatch are available, as are data on the climate control, on the compressed air supply and on further auxiliary systems. With this, yarn manufacturers have at all times a complete overview of the ongoing production process, including comprehensive information on quality and production costs.

Source:

Oerlikon

Fraunhofer UMSICHT: Auf dem Weg zu einem geschlossenen Kohlenstoffkreislauf © Fraunhofer UMSICHT
Ein Blick auf den Hochdruckreaktor, der bei der elektrochemischen Reduktion zum Einsatz kam.
28.10.2020

Fraunhofer UMSICHT: Auf dem Weg zu einem geschlossenen Kohlenstoffkreislauf

  • Wie überkritisches Kohlendioxid die elektrochemische Reduktion von CO2 beeinflusst

Auf dem Weg zu einer klimaneutralen Industrie spielt die elektrochemische Reduktion von Kohlendioxid eine wichtige Rolle: Mit ihrer Hilfe lässt sich unter Einsatz erneuerbarer Energien CO2 in Brennstoffe oder Grundchemikalien umwandeln. Der Haken an der Sache: Bislang funktioniert diese Katalyse lediglich im Labor. Bei der Übertragung auf den industriellen Maßstab treten immer noch Schwierigkeiten auf – von der begrenzten Haltbarkeit der Katalysatorsysteme bis zur unerwünschten Entwicklung von Wasserstoff. Forschende der Ruhr-Universität Bochum, des Fritz-Haber-Instituts und des Fraunhofer UMSICHT haben sich auf die Suche nach Lösungen gemacht und dabei den Einfluss von überkritischem Kohlendioxid auf die elektrochemische Reduktion von CO2 untersucht.

  • Wie überkritisches Kohlendioxid die elektrochemische Reduktion von CO2 beeinflusst

Auf dem Weg zu einer klimaneutralen Industrie spielt die elektrochemische Reduktion von Kohlendioxid eine wichtige Rolle: Mit ihrer Hilfe lässt sich unter Einsatz erneuerbarer Energien CO2 in Brennstoffe oder Grundchemikalien umwandeln. Der Haken an der Sache: Bislang funktioniert diese Katalyse lediglich im Labor. Bei der Übertragung auf den industriellen Maßstab treten immer noch Schwierigkeiten auf – von der begrenzten Haltbarkeit der Katalysatorsysteme bis zur unerwünschten Entwicklung von Wasserstoff. Forschende der Ruhr-Universität Bochum, des Fritz-Haber-Instituts und des Fraunhofer UMSICHT haben sich auf die Suche nach Lösungen gemacht und dabei den Einfluss von überkritischem Kohlendioxid auf die elektrochemische Reduktion von CO2 untersucht.

Im Zentrum ihrer Überlegungen stand sogenanntes überkritisches Kohlendioxid. Kurz: scCO2. Dabei handelt es sich um Kohlenstoffdioxid in einem fluiden Zustand – sowohl über seiner kritischen Temperatur als auch über seinem kritischen Druck. »Jüngste Berichte haben gezeigt, dass die Entwicklung von Wasserstoff bei der elektrochemischen Reaktion signifikant unterdrückt werden kann, wenn aprotische Lösungsmittel mit wohldefiniertem Wassergehalt als Elektrolyt verwendet werden«, erläutert Ulf-Peter Apfel, Professor an der Ruhr-Universität Bochum und Wissenschaftler am Fraunhofer UMSICHT. »Da eine Erhöhung des CO2-Drucks zu einer höheren CO2-Konzentration in aprotischen Lösungsmitteln führt, schien die Verwendung von überkritischem Kohlendioxid als Lösungsmittel eine elegante Möglichkeit.«

In der Folge führten die Forschenden eine Vergleichsstudie durch: Sie beleuchteten die Katalyse sowohl unter normalen als auch unter überkritischen Bedingungen und setzten dabei auf kohlenstoffgeträgerte Kupferkatalysatoren als Benchmark-Systeme. »Wir konnten u.a. zeigen, dass die Verwendung von überkritischem Kohlendioxid zu einer Unterdrückung der Entwicklung von Wasserstoff und zur Bildung von Ameisensäure führt«, so Ulf-Peter Apfel. »Um die vorteilhaften Eigenschaften von scCO2 für die elektrochemische Reduktion von Kohlendioxid zu nutzen, wird sich die zukünftige Forschung auf die Untersuchung weiterer Katalysatoren für den Einsatz mit scCO2-Gemischen, alternativen Co-Lösungsmitteln und die Verbesserung der Elektrodenstabilität konzentrieren.«

Source:

Fraunhofer UMSICHT

Anlagentechnik zum Carbonfaser-Recycling im Zentrum für Textilen Leichtbau am STFI, Foto: Dirk Hanus.
28.10.2020

Innovationen beim Recycling von Carbonfasern

  • Kohlenstoff mit mehreren Leben

Geht es um die Zukunft der motorisierten Mobilität, reden alle vom Antrieb: Wie viel E-Auto, wie viel Verbrenner verträgt die Umwelt und braucht der Mensch? Zugleich stellen neue Antriebe erhöhte Anforderungen nicht nur an den Motor, sondern auch an dessen Gehäuse und die Karosse: Für solch anspruchsvolle Anwendungen kommen häufig Carbonfasern zum Einsatz. Wie der Antrieb der Zukunft, sollten auch die Werkstoffe am Fahrzeug umweltfreundlich sein. Deshalb ist Recycling von Carbonfasern gefragt. Lösungen dafür haben Institute der Zuse-Gemeinschaft entwickelt.

  • Kohlenstoff mit mehreren Leben

Geht es um die Zukunft der motorisierten Mobilität, reden alle vom Antrieb: Wie viel E-Auto, wie viel Verbrenner verträgt die Umwelt und braucht der Mensch? Zugleich stellen neue Antriebe erhöhte Anforderungen nicht nur an den Motor, sondern auch an dessen Gehäuse und die Karosse: Für solch anspruchsvolle Anwendungen kommen häufig Carbonfasern zum Einsatz. Wie der Antrieb der Zukunft, sollten auch die Werkstoffe am Fahrzeug umweltfreundlich sein. Deshalb ist Recycling von Carbonfasern gefragt. Lösungen dafür haben Institute der Zuse-Gemeinschaft entwickelt.

Carbonfasern, auch als Kohlenstofffasern oder verkürzt als Kohlefasern bekannt, bestehen fast vollständig aus reinem Kohlenstoff. Sehr energieaufwändig wird er bei 1.300 Grad Celsius aus dem Kunststoff Polyacrylnitril gewonnen. Die Vorteile der Carbonfasern: Sie haben kaum Eigengewicht, sind enorm bruchfest und stabil. Solche Eigenschaften benötigt man z.B. am Batteriekasten von E-Mobilen oder in Strukturbauteilen der Karosserie. So arbeitet das Sächsische Textilforschungsinstitut e.V. (STFI) aktuell gemeinsam mit Industriepartnern daran, statisch-mechanische Stärken der Carbonfasern mit Eigenschaften zur Schwingungsdämpfung zu verknüpfen, um die Gehäuse von E-Motoren im Auto zu verbessern. Angedacht ist in dem vom Bundeswirtschaftsministerium geförderten Projekt die Entwicklung sogenannter Hybridvliesstoffe, die neben der Carbonfaser als Verstärkung weitere Faserstoffe enthalten. „Wir wollen, die Vorteile unterschiedlicher Faserstoffe verbinden und so ein optimal auf die Anforderungen abgestimmtes Produkt entwickeln“, erläutert Marcel Hofmann, STFI-Abteilungsleiter Textiler Leichtbau.

Damit würden die Chemnitzer Forschenden bisherige Vliesstoff-Lösungen ergänzen. Sie blicken auf eine 15-jährige Geschichte in der Arbeit mit recycelten Carbonfasern zurück. Der globale Jahresbedarf der hochwertigen Fasern hat sich im vergangenen Jahrzehnt fast vervierfacht, laut Angaben der Industrievereinigung AVK auf zuletzt rd. 142.000 t. „Die steigende Nachfrage hat das Recycling immer stärker in den Fokus gerückt“, betont Hofmann. Carbonfaserabfälle sind ihm zufolge für etwa ein Zehntel bis ein Fünftel des Preises von Primärfasern erhältlich, müssen aber noch aufbereitet werden. Dreh- und Angelpunkt für den Forschungserfolg der recycelten Fasern sind konkurrenzfähige Anwendungen. Die hat das STFI nicht nur am Auto, sondern auch im Sport-Freizeitsektor sowie in der Medizintechnik gefunden, so in Komponenten für Computertomographen. "Während Metalle oder Glasfasern als potenzielle Konkurrenzprodukte Schatten werfen, stört Carbon die Bilddarstellung nicht und kann seine Vorteile voll ausspielen“, erläutert Hofmann.

Papier-Knowhow nutzen
Können recycelte Carbonfasern nochmals den Produktkreislauf durchlaufen, verbessert das ihre CO2-Bilanz deutlich. Zugleich gilt: Je kürzer die Carbonfasern, desto unattraktiver sind sie für die weitere Verwertung. Vor diesem Hintergrund entwickelten das Forschungsinstitut Cetex und die Papiertechnische Stiftung (PTS), beide Mitglieder der Zuse-Gemeinschaft, im Rahmen eines Forschungsvorhabens ein neues Verfahren, das bislang wenig geeignet erscheinende Recycling-Carbonfasern ein zweites Produktleben gibt. „Während klassische Textilverfahren die ohnehin sehr spröden Recycling-Carbonfasern in Faserlängen von mind. 80 mm trocken verarbeiten, beschäftigten wir uns mit einem Verfahren aus der Papierindustrie, welches die Materialien nass verarbeitet. Am Ende des Prozesses erhielten wir, stark vereinfacht gesprochen, eine flächige Matte aus recycelten Carbonfasern und Kunststofffasern“, erläutert Cetex-Projektingenieur Johannes Tietze das Verfahren, mit dem auch 40 mm kurze Carbonfasern zu attraktiven Zwischenprodukten recycelt werden können. Das danach in einem Heißpressprozess entstandene Erzeugnis dient als Grundmaterial für hochbelastbare Strukturbauteile. Zusätzlich wurden die mechanischen Eigenschaften der Halbzeuge durch die Kombination mit endlosfaserverstärkten Tapes verbessert. Das Recyclingprodukt soll, so die Erwartung der Forschenden, glasfaserverstärkten Kunststoffen, Konkurrenz machen, z.B. bei Anwendungen im Schienen- und Fahrzeugbau. Die Ergebnisse fließen nun in weiterführende Forschung und Entwicklung im Kooperationsnetzwerk Ressourcetex ein, einem geförderten Verbund von 18 Partnern aus Industrie und Wissenschaft.

Erfolgreiche Umsetzung in der Autoindustrie
Industriereife Lösungen für die Verwertung von Carbonfaser-Produktionsabfällen werden im Thüringischen Institut für Textil- und Kunststoff-Forschung Rudolstadt (TITK) entwickelt. Mehrere dieser Entwicklungen wurden mit Partnern beim Unternehmen SGL Composites in Wackersdorf industriell umgesetzt. Die Aufbereitung der so genannten trockenen Abfälle, hauptsächlich aus Verschnittresten, erfolgt nach einem eigenen Verfahren. „Dabei führen wir die geöffneten Fasern verschiedenen Prozessen zur Vliesherstellung zu“, sagt die zuständige Abteilungsleiterin im TITK, Dr. Renate Lützkendorf. Neben den Entwicklungen für den Einsatz z.B. im BMW i3 in Dach oder Hintersitzschale wurden im TITK spezielle Vliesstoffe und Verfahren für die Herstellung von Sheet Molding Compounds (SMC) etabliert, das sind duroplastische Werkstoffe, die aus Reaktionsharzen und Verstärkungsfasern bestehen und zum Pressen von Faser-Kunststoff-Verbunden verwendet werden. Eingang fand dies z.B. in einem Bauteil für die C-Säule des 7er BMW. „In seinen Projekten setzt das TITK vor allem auf die Entwicklung leistungsfähigerer Prozesse und kombinierter Verfahren, um den Carbonfaser-Recyclingmaterialien auch von den Kosten her bessere Chancen in Leichtbauanwendungen einzuräumen“, betont Lützkendorf. So liege der Fokus gegenwärtig auf dem Einsatz von CF-Recyclingfasern in thermoplastischen Prozessen zur Platten- und Profilextrusion. „Ziel ist es, die Kombination von Kurz- und Endlosfaserverstärkung in einem einzigen, leistungsfähigen Prozess-Schritt zu realisieren.“

Source:

Deutsche Industrieforschungsgemeinschaft Konrad Zuse e.V.

Erstklassige Wischtücher mit Phantom-Technologie (c) Oerlikon Manmade Fibers
Phantom technology enables greater freedom for formulating continuous and discrete fibers allows for more flexible and absorbent structures and highly textured materials.
22.10.2020

First class wipes with Phantom technology

Neumünster – Success is built by connecting the right people with the right product. In a global marketplace, this means collaboration is just as important as competition. Companies need to focus on their strengths, while finding practical ways to innovate and expand upon their capabilities.

An exclusive license from Procter & Gamble offers the best for nonwovens

In order to do so, working together often makes the most sense. This is what motivated Procter & Gamble and Oerlikon Nonwoven – Teknoweb Materials to agree on an exclusive license agreement to market and sell the Phantom platform worldwide.

Neumünster – Success is built by connecting the right people with the right product. In a global marketplace, this means collaboration is just as important as competition. Companies need to focus on their strengths, while finding practical ways to innovate and expand upon their capabilities.

An exclusive license from Procter & Gamble offers the best for nonwovens

In order to do so, working together often makes the most sense. This is what motivated Procter & Gamble and Oerlikon Nonwoven – Teknoweb Materials to agree on an exclusive license agreement to market and sell the Phantom platform worldwide.

The patented process for hybrid nonwovens combines the best of both airlaid and spunmelt technologies to deliver new, flexible ways of creating wet and dry wipes. Phantom technology offers additional benefits by reducing resources and cost, while increasing overall performance. The exclusive license gives Oerlikon Nonwoven – Teknoweb Materials distribute this technology worldwide. In addition, Oerlikon Nonwoven – Teknoweb Materials have further refined the process into their own Levra technology – an entry-level option which offers tailored production volumes with lower investment costs but is still suitable to be upgraded to the premium Phantom model in the future.

Quality products that cost less

Essentially, Phantom technology was developed to produce hybrid substrates. The spunmelt and airlaid processes are merged into one step to combine cellulose fibers, long fibers such as cotton, or even powders with polymer fibers in unprecedented ways. This technology has clear advantages in terms of resources, performance, and cost compared to the previous processes on the market. By removing hydroentanglement, it is no longer necessary to dry the material. Adjusting the process can optimize relevant product characteristics such as softness, strength, dirt absorption, and liquid absorption. In the end, this even increases the quality of the product itself.

The greater freedom for formulating continuous and discrete fibers allows for more flexible and absorbent structures and highly textured materials. Wipes feel softer to the touch while providing more protection for the hands. Up to 90% of the material can consist of pulp fibers, although natural alternatives like cotton or synthetic fibers can be added to the mix.

Phantom technology has not only found a practical application in a variety of wipes – such as hygiene wipes, anti-bacterial wipes, surgical wipes, or industrial wipes – but also in absorbent cores, for instance indiapers or fempro products. With so many applications, Oerlikon Nonwoven – Teknoweb Materials are fully prepared to deliver Procter & Gamble’s innovative Phantom technology to the global nonwovens market.

Source:

Oerlikon Manmade Fibers

Moti Fabrics (Pvt) Ltd. Moves to Digital Production with Mimaki Tiger (c) Mimaki
The Tiger-1800B MkII, Mimaki’s flagship industrial volume textile printer
22.10.2020

Moti Fabrics (Pvt) Ltd. Moves to Digital Production with Mimaki Tiger

  •   Mimaki Tiger-1800B MkII Printers for Faster, High-Quality Textile Printing

Amsterdam - Mimaki Europe, a leading manufacturer of inkjet printers and cutting systems, announces today that Pakistani textile company, Moti Fabrics (Pvt) Ltd., is leveraging multiple Mimaki Tiger industrial textile printing units to take its business to the next level. As a result of on the outstanding performance and process optimisation delivered by the Mimaki digital printing equipment, the company has been able to adapt to changes in the textile industry and is now projected to reinforce its market position and expand its capabilities in high-quality textile production.

  •   Mimaki Tiger-1800B MkII Printers for Faster, High-Quality Textile Printing

Amsterdam - Mimaki Europe, a leading manufacturer of inkjet printers and cutting systems, announces today that Pakistani textile company, Moti Fabrics (Pvt) Ltd., is leveraging multiple Mimaki Tiger industrial textile printing units to take its business to the next level. As a result of on the outstanding performance and process optimisation delivered by the Mimaki digital printing equipment, the company has been able to adapt to changes in the textile industry and is now projected to reinforce its market position and expand its capabilities in high-quality textile production.

Headquartered in Faisalabad, Punjab province – the second largest textile hub in Pakistan –, Moti Fabrics (Pvt) Ltd. mainly serves the high fashion industry and uses its cutting-edge technology to print about 100,000 metres daily. Faced with recent challenges in the global textile market, management at Moti Fabrics (Pvt) Ltd. embarked on innovating the company’s business model, shifting from conventional to digital printing. In doing so, the company invested in Mimaki’s advanced industrial textile technology and installed three Mimaki Tiger-1800B MkII units. “We were – and still are – experiencing a massive transformation in the printing segment, with brands demanding high quality products delivered within short deadlines. This change in our customers’ requirements urged us to move to digital printing,” says Muhammad Asif, CEO at Moti Fabrics (Pvt) Ltd. “Our choice has already proved sound as our brand-new Tiger-1800B MkII printing systems have enabled us to cope with the high standards of the fashion industry in terms of both quality and delivery times. In addition, we have been able to gradually enhance our production processes in a cost-effective way.”

The Tiger-1800B MkII is Mimaki’s flagship industrial volume textile printer, available either in dye sublimation configuration for transfer printing or with reactive ink for direct-to-textile printing. Of the three Mimaki Tiger-1800B MkII solutions operating at Moti Fabrics (Pvt) Ltd., two are equipped with reactive inks, enabling the company to directly print onto natural fibres such as cotton and linen, as well as onto manufactured cellulose fibres, including rayon and nylon. The third Mimaki Tiger-1800B MkII features sublimation inks serves the ever-growing printed polyester market, allowing the company to strategically diversify its product portfolio.

“There are several features of the Tiger-1800B MkII that benefit our production and our business at large. The MAPS (Mimaki Advanced Pass System), just to name one, prevents banding and colour-shifting to deliver a higher standard of quality, while the NRS (Nozzle Recovery System) provides uninterrupted production, minimising downtime and ensuring superior results. The sticky belt system together with the large-size ink tanks (with a capacity of 10kg) and the high-performance software RIP TxLink3 are some of the other features that make these printers efficient, user-friendly and reliable,” says Asif.

Asif concludes, “Looking at the future, our aim is to set up a print department featuring only Mimaki’s technologies. We are already considering the next steps to make this possible, knowing that we can count on the support of Signtrade, Mimaki’s dealer in the region and our trustworthy partner.”

Moti Fabrics (Pvt) Ltd. was founded in 1992 by Muhammad Asif’s father Haji Muhammad Yousaf and his partner Haji Rasheed Ahmad. Established as a dyeing company, Moti Fabrics (Pvt) Ltd. was able to gradually diversify the business over the years to become an advanced textile printing specialist. Today, the company is an established provider to the high fashion industry in Pakistan and on an international level.

“The story of Moti Fabrics is incredibly inspiring. Belonging to a region with such rooted textile printing heritage, the company has been able to embrace a new, challenging business model in order to stay at pace with the changing demand from the textile industry and has succeeded,” comments Ronald van den Broek, General Sales Manager at Mimaki Europe. “Customers like Moti Fabrics make us proud as they demonstrate how our advanced Mimaki Tiger industrial textile series can be the enabling technology for those textile companies planning the shift from conventional to digital printing.”

Antiviral and antibacterial zwissCLEAN masks® of zwissTEX (c) zwissTex
zwissCLEAN MASK BASIC
21.10.2020

Antiviral and antibacterial zwissCLEAN masks® of zwissTEX

With zwissCLEAN® masks, zwissTEX is a pioneer among manufacturers of antiviral and antibacterial oronasal masks. Unlike conventional models they actively and highly effectively eliminate viruses and bacteria thanks to the latest textile technologies. This is made possible by an environmentally friendly finishing that foregoes the use of silver and zinc. "The formula physically interrupts the cell membrane of the viruses and bacteria - so no development of resistance is possible. In this way 99.9 percent of viruses and bacteria are eliminated within a very short time," says Maximilian Schönfließ - Business Development Manager of zwissTEX.

The zwissCLEAN MASK BASIC is particularly suitable when a mask is to be worn over a longer period of time - whether for school, concerts, trade fair visits or air travel. "The special feature of our zwissCLEAN MASK BASIC is that it can be worn for up to 12 hours without any problems due to the breathable material", says Schönfließ. "With it even sleeping is possible. And unlike disposable masks it can be washed up to 10 times at 30 degrees. Disposal by type is also possible".

With zwissCLEAN® masks, zwissTEX is a pioneer among manufacturers of antiviral and antibacterial oronasal masks. Unlike conventional models they actively and highly effectively eliminate viruses and bacteria thanks to the latest textile technologies. This is made possible by an environmentally friendly finishing that foregoes the use of silver and zinc. "The formula physically interrupts the cell membrane of the viruses and bacteria - so no development of resistance is possible. In this way 99.9 percent of viruses and bacteria are eliminated within a very short time," says Maximilian Schönfließ - Business Development Manager of zwissTEX.

The zwissCLEAN MASK BASIC is particularly suitable when a mask is to be worn over a longer period of time - whether for school, concerts, trade fair visits or air travel. "The special feature of our zwissCLEAN MASK BASIC is that it can be worn for up to 12 hours without any problems due to the breathable material", says Schönfließ. "With it even sleeping is possible. And unlike disposable masks it can be washed up to 10 times at 30 degrees. Disposal by type is also possible".

The zwissCLEAN MASK COMFORT is recommended for daily protection at shopping, on public transport, at business appointments or similar events. It consists of a three-layer structure and combines efficient antiviral protection with long-term wearing comfort. The outer material and the integrated fleece promote protection against viruses and bacteria. The lower material made of organic cotton guarantees a lasting pleasant feeling on the skin. The mask can be washed up to 30 times, thus replacing up to 210 disposable masks and saving resources sustainably.

Source:

zwissTex

Lenzing wins State Prize for Innovation with sustainable nonwovens technology (c) Lenzing Aktiengesellschaft
Lenzing Aktiengesellschaft
21.10.2020

Lenzing: State Prize for Innovation with sustainable nonwovens technology

  • On October, 20th, 2020, the State Prize for Innovation was awarded to the Lenzing Group for their LENZING™ Web Technology.
  • Lenzing thus received the highest award for particularly innovative achievements in Austria.

Lenzing – On Tuesday, October 20, 2020, the Lenzing Group was awarded the coveted “State Prize for Innovation”. Lenzing emerged as the winner with its project LENZING™ Web Technology and thus received the highest recognition for particularly innovative achievements in Austria. The novel process combines fiber and nonwovens production in only one step, setting new standards in terms of efficiency, circularity and ecological sustainability. Margarete Schramböck, Federal Minister for Digital and Economic Affairs, presented the award to Gert Kroner, Vice President Global Research & Development.

  • On October, 20th, 2020, the State Prize for Innovation was awarded to the Lenzing Group for their LENZING™ Web Technology.
  • Lenzing thus received the highest award for particularly innovative achievements in Austria.

Lenzing – On Tuesday, October 20, 2020, the Lenzing Group was awarded the coveted “State Prize for Innovation”. Lenzing emerged as the winner with its project LENZING™ Web Technology and thus received the highest recognition for particularly innovative achievements in Austria. The novel process combines fiber and nonwovens production in only one step, setting new standards in terms of efficiency, circularity and ecological sustainability. Margarete Schramböck, Federal Minister for Digital and Economic Affairs, presented the award to Gert Kroner, Vice President Global Research & Development.

“This award is a great recognition of our work. Our goal is to grow continuously with sustainable innovations and to look beyond our fibers, to the needs of our customers and partners and to the needs of consumers worldwide. With the LENZING™ Web Technology we have created an exciting and promising solution for eco-friendly products in line with our corporate strategy sCore TEN and support consumers in their daily needs in a sustainable way”, says Stefan Doboczky, Chief Executive Officer of the Lenzing Group.

Biodegradable nonwovens for a clean environment

The pollution of the environment by plastics is one of the most urgent problems of our time. Every day, millions of hygiene products and wipes around the globe end up in garbage and sewage. Most of them consist of up to 80 percent polyester or other fossil, non-biodegradable materials and therefore pollute the environment. With the LENZING™ Web Technology, Lenzing has developed a patented technology to counter this problem: Sustainable and eco-friendly nonwovens are produced from the renewable raw material wood. These are not only plastic-free, they also score points for their particularly high environmental friendliness. “Thanks to a unique self-bonding mechanism, in which the filaments bond with each other during the spinning process, binders, which are found in many nonwovens, are no longer needed. As a result, the nonwovens produced with LENZING™ Web Technology are 100 percent biodegradable and do not pollute either humans or the environment”, says Gert Kroner, Vice President Global Research & Development of the Lenzing Group.

The Austrian State Prize for Innovation is awarded annually by the Federal Ministry for Digital and Economic Affairs to the most innovative Austrian company. In 2020, the competition took place for the 40th time.

Bandagenband (c) JUMBO Textil
20.10.2020

JUMBO-Textil: Narrow textiles with a function

Technical textiles fulfil many functions: they hold, they lift, they fixate, they stretch – and they tension. In this function narrow textiles fulfil an important task in product development. And they offer significant advantages over metal or plastic tensioning devices such as springs, clamps or cable ties.

Properties
Textiles are light: a property that plays a central role in modern mobility. Textiles are flexible: from extremely high to extremely low elasticity: the force-elongation behaviour of elasticated narrow textiles can be precisely defined. Depending on the tensioning task to be performed. Textiles tension in tight packaging spaces: elastics can also be used where space is too tight for springs and clasps. Textiles are energy efficient: lightweight, with high tensioning force. Textiles are easy to handle: replace a connector spontaneously and without tools, quickly change the length or roll up and store a supply. And textiles are sustainable: natural fibres and rubber are natural and ecologically degradable raw materials; synthetic fibres can be completely produced from recycled materials.

Technical textiles fulfil many functions: they hold, they lift, they fixate, they stretch – and they tension. In this function narrow textiles fulfil an important task in product development. And they offer significant advantages over metal or plastic tensioning devices such as springs, clamps or cable ties.

Properties
Textiles are light: a property that plays a central role in modern mobility. Textiles are flexible: from extremely high to extremely low elasticity: the force-elongation behaviour of elasticated narrow textiles can be precisely defined. Depending on the tensioning task to be performed. Textiles tension in tight packaging spaces: elastics can also be used where space is too tight for springs and clasps. Textiles are energy efficient: lightweight, with high tensioning force. Textiles are easy to handle: replace a connector spontaneously and without tools, quickly change the length or roll up and store a supply. And textiles are sustainable: natural fibres and rubber are natural and ecologically degradable raw materials; synthetic fibres can be completely produced from recycled materials.

Applications
Development teams in numerous industries leverage these properties for their products. For example, for flexible machine parts in mechanical engineering, for switch contacts in electrical engineering, for oscillation-capable locking systems in the construction industry, for noise- and vibration-free seating systems in the automotive sector or for grip rings in the toys industry.

Tasks
Particularly en vogue today, when we are spending more time than usual in our own homes: applications for narrow textiles in the furniture industry. They go far beyond the area of legacy home textiles: as tensioning elements in armchairs, sofas and chairs, as hinge solutions in cupboards, as fixation elements in extendable or folding tables. Narrow textiles are used for gripping tasks almost everywhere in the living room.

"JUMBO-Textil specialises in precisely implementing the individual requirements for defined force-elongation values of elasticated narrow textiles: we adapt the technical properties of our products precisely to the specific task and the respective raw materials," explains Werner Thiex, Sales Director Automotive. "Precise technical specification plus sustainable raw materials – this is a crucial combination in the 21st century".

Source:

stotz-design.com

Cetex (c) Cetex
f.l.t.r.: Falk Mehlhorn (Cetex), Florian Mitzscherlich (The FilamentFactory), Matthias Hess (The FilamentFactory), Yasar Kiray (The Filament Factory), Sebastian Iwan (thermoPre ENGINEERING GmbH), Sven P. Fritz (The FilamentFactory)
16.10.2020

Cetex: Long-term cooperation in the area of hybrid rovings

The Cetex Institut gGmbH, the thermoPre ENGINEERING GmbH and The FilamentFactory GmbH cooperate in the development, production and marketing of novel hybrid materials. The cooperation agreement signed on October 2, 2020 in Chemnitz takes the collaboration to a new level. "We are pleased to be able to supply the hybrid rovings to the end user not only in an application-specific manner, but also to offer the engineering for subsequent component applications, including the prototyping of the FRP components," says Sebastian Nendel, Managing Director of Cetex.

The Cetex Institut gGmbH, the thermoPre ENGINEERING GmbH and The FilamentFactory GmbH cooperate in the development, production and marketing of novel hybrid materials. The cooperation agreement signed on October 2, 2020 in Chemnitz takes the collaboration to a new level. "We are pleased to be able to supply the hybrid rovings to the end user not only in an application-specific manner, but also to offer the engineering for subsequent component applications, including the prototyping of the FRP components," says Sebastian Nendel, Managing Director of Cetex.

Patented process for the production of hybrid rovings
In the last 3 years the Cetex Institute has developed a plant technology for the production of hybrid rovings. By means of the patented process, different material combinations can be produced according to customer specifications. Material combinations of reinforcing fibers (glass, basalt, carbon, aramid or high-strength polymer fibers) can be combined with matrix fibers (PP, PET, PA, PPS, PEEK), but also special combinations of different reinforcing fibers or the combination of reinforcing fibers with metal fibers. Advantages of the new hybrid roving are the torsion-free and completely stretched fiber layer and the associated optimal utilization of the properties of the reinforcing fibers, as well as a very good homogeneity, whereby excellent processing can be achieved in later process steps.

Series production as next step
The next goal is clearly defined: Under the agreement, the process is to be jointly developed further by the project partners and transferred to series production. These joint activities form the basis for many years of intensive cooperation in this new field.

Source:

Cetex Institut gGmbH

Cetex (c) Cetex
v.l.n.r.: Falk Mehlhorn (Cetex), Florian Mitzscherlich (The FilamentFactory), Matthias Hess (The FilamentFactory), Yasar Kiray (The Filament Factory), Sebastian Iwan (thermoPre ENGINEERING), Sven P. Fritz (The FilamentFactory)
16.10.2020

Cetex: Langfristige Kooperation im Bereich von Hybridrovings

Das Cetex Institut, die thermoPre ENGINEERING GmbH und die The FilamentFactory GmbH kooperieren bei der Entwicklung, Herstellung und Vermarktung neuartiger Hybridmaterialien. Der am 2. Oktober 2020 in Chemnitz gemeinsam unterzeichnete Kooperationsvertrag hebt die Zusammenarbeit auf eine neue Stufe. „Wir freuen uns, dem Endanwender die Hybridrovings nicht nur anwendungsangepasst liefern zu können, sondern auch das Engineering für spätere Bauteilanwendungen inklusive dem Prototyping der FKV-Bauteile anzubieten“, so Sebastian Nendel, geschäftsführender Direktor des Cetex Institutes.

Das Cetex Institut, die thermoPre ENGINEERING GmbH und die The FilamentFactory GmbH kooperieren bei der Entwicklung, Herstellung und Vermarktung neuartiger Hybridmaterialien. Der am 2. Oktober 2020 in Chemnitz gemeinsam unterzeichnete Kooperationsvertrag hebt die Zusammenarbeit auf eine neue Stufe. „Wir freuen uns, dem Endanwender die Hybridrovings nicht nur anwendungsangepasst liefern zu können, sondern auch das Engineering für spätere Bauteilanwendungen inklusive dem Prototyping der FKV-Bauteile anzubieten“, so Sebastian Nendel, geschäftsführender Direktor des Cetex Institutes.

Patentiertes Verfahren zur Herstellung von Hybridrovings
Das Cetex Institut hat in den letzten 3 Jahren eine Anlagentechnologie zur Herstellung von Hybridrovings entwickelt. Durch das patentierte Verfahren können kundenspezifisch verschiedene Materialkombinationen hergestellt werden. Dabei können Materialkombinationen aus Verstärkungsfasern (Glas, Basalt, Carbon, Aramid oder hochfesten Polymerfasern) mit Matrixfasern (PP, PET, PA, PPS, PEEK) kombiniert werden, aber auch Spezialkombinationen aus unterschiedlichen Verstärkungsfasern oder der Kombination von Verstärkungsfasern mit Metallfasern. Vorteile des neuartigen Hybridrovings sind die drehungsfreie und vollständig gestreckte Faserlage und die damit verbundene optimale Eigenschaftsausnutzung der Verstärkungsfasern, wie auch eine sehr gute Homogenität, wodurch in späteren Prozessschritten eine hervorragende Verarbeitung erzielt werden kann.

Serienproduktion als nächsten Schritt
Das nächste Ziel ist klar gesetzt: Im Rahmen der Vereinbarung soll das Verfahren durch die Projektpartner gemeinsam weiterentwickelt und bis zur Serienproduktion überführt werden. Diese gemeinsamen Aktivitäten bilden die Basis für eine langjährige intensive Zusammenarbeit auf diesem neuen Gebiet.

Source:

Cetex Institut gGmbH

Oerlikon: (c) Oerlikon
v.l.n.r. Jochen Adler, Ralf Morgenroth, Markus Reichwein, Matthias Schmitz
15.10.2020

Oerlikon Experten teilen ihr Know-how online

Um den Know-how- und Technologietransfer in Zeiten der Corona Pandemie weiterhin sicherzustellen, startet das Segment Manmade Fibers des Schweizer Oerlikon Konzerns ab November seine neue Webinar Serie. In den bis Ende 2020 zunächst geplanten vier interessanten Technologievorträgen in englischer Sprache werden aktuelle Trends bei der Produktion von Chemiefasern betrachtet sowie Oerlikons Lösungen dazu präsentiert und mit den Teilnehmern diskutiert. Eine Fortsetzung der Webinar Serie für 2021 ist bereits in Arbeit.

Um den Know-how- und Technologietransfer in Zeiten der Corona Pandemie weiterhin sicherzustellen, startet das Segment Manmade Fibers des Schweizer Oerlikon Konzerns ab November seine neue Webinar Serie. In den bis Ende 2020 zunächst geplanten vier interessanten Technologievorträgen in englischer Sprache werden aktuelle Trends bei der Produktion von Chemiefasern betrachtet sowie Oerlikons Lösungen dazu präsentiert und mit den Teilnehmern diskutiert. Eine Fortsetzung der Webinar Serie für 2021 ist bereits in Arbeit.

  • Factory know-how from a single source – A boost for your efficiency
    4. November 2020: 11:00-11:45h CET
    Redner: Jochen Adler, Oerlikon Manmade Fibers CTO*
  • VarioFil – Your compact spinning solution
    11. November 2020: 11:00-11:45h CET
    Redner: Ralf Morgenroth, Head of Engineering Textile Machinery BB Engineering (BBE)*
  • Green Technologies – Join us on the road to a sustainable fiber industry
    2. December 2020: 11:00-11:45h CET
    Redner: Markus Reichwein, Head of Product Management Oerlikon Manmade Fibers*
  • VacuFil – Your future upcycling plant, from waste to value
    9. December 2020: 11:00-11:45h CET
    Redner: Matthias Schmitz, Head of Engineering Recycling Technology, BB Engineering (BBE)*

 

*Weitere Informationen im Anhang

 

Source:

Oerlikon Textile GmbH & Co. KG

Oerlikon (c) Oerlikon
f.l.t.r Jochen Adler, Ralf Morgenroth, Markus Reichwein, Matthias Schmitz
15.10.2020

Oerlikon Experts share their know-how online

In order to ensure the transfer of know-how and technology in times of the pandemic, the Manmade Fibers segment of the Swiss Oerlikon Group will start its new webinar series in November. Four interesting technology lectures are planned until the end of 2020 which will be held in English. Current trends in the production of manmade fibers as well as Oerlikons technology solutions will be presented and discussed with the participants. A continuation of the webinar series is already planned for 2021.

In order to ensure the transfer of know-how and technology in times of the pandemic, the Manmade Fibers segment of the Swiss Oerlikon Group will start its new webinar series in November. Four interesting technology lectures are planned until the end of 2020 which will be held in English. Current trends in the production of manmade fibers as well as Oerlikons technology solutions will be presented and discussed with the participants. A continuation of the webinar series is already planned for 2021.

  • Factory know-how from a single source – A boost for your efficiency
    4. November 2020: 11:00-11:45h CET
    Speaker: Jochen Adler, Oerlikon Manmade Fibers CTO*
     
  • VarioFil – Your compact spinning solution
    11. November 2020: 11:00-11:45h CET
    Speaker: Ralf Morgenroth, Head of Engineering Textile Machinery BB Engineering (BBE)*
     
  • Green Technologies – Join us on the road to a sustainable fiber industry
    2. December 2020: 11:00-11:45h CET
    Speaker: Markus Reichwein, Head of Product Management Oerlikon Manmade Fibers*
     
  • VacuFil – Your future upcycling plant, from waste to value
    9. December 2020: 11:00-11:45h CET
    Speaker: Matthias Schmitz, Head of Engineering Recycling Technology, BB Engineering (BBE)*

 

*Please read the attached document for more information

Source:

Oerlikon Textile GmbH & Co. KG

Anker Carpet (c) Anker
13.10.2020

Anker, Devan and Shark Solutions develop flame retardant aviation carpet

Anker, Devan and Shark Solutions teamed up to create the world’s first flame retardant aviation carpet using a recycled binder. Inspired by the knowledge and the needs of the aviation market, Anker motivated to achieve this new goal together. The PVB binder reuses laminated glass, from windshields and architectural/building glass, that otherwise would go to landfill.

German carpet manufacturer Anker is the first company to offer flame retardant carpets for aviation that are made with a recycled binder. In the search for a more sustainable binder, Anker discovered the PVB from Shark Solutions, a Danish cleantech company focused on giving a new life to post-consumer PVB. Properties of the aviation carpet with PVB as binder are the same as those of traditional non-sustainable carpets. The market has been looking for this type of solutions for a long time and market introduction has already started. Anker will introduce well known and special developed styles of aviation carpets with PVB and plan to take out traditional non-sustainable aviation carpets stepwise as soon as possible.

Anker, Devan and Shark Solutions teamed up to create the world’s first flame retardant aviation carpet using a recycled binder. Inspired by the knowledge and the needs of the aviation market, Anker motivated to achieve this new goal together. The PVB binder reuses laminated glass, from windshields and architectural/building glass, that otherwise would go to landfill.

German carpet manufacturer Anker is the first company to offer flame retardant carpets for aviation that are made with a recycled binder. In the search for a more sustainable binder, Anker discovered the PVB from Shark Solutions, a Danish cleantech company focused on giving a new life to post-consumer PVB. Properties of the aviation carpet with PVB as binder are the same as those of traditional non-sustainable carpets. The market has been looking for this type of solutions for a long time and market introduction has already started. Anker will introduce well known and special developed styles of aviation carpets with PVB and plan to take out traditional non-sustainable aviation carpets stepwise as soon as possible.

Shark’s PVB reuses laminated glass, from windshields and architectural/building glass, that otherwise would go to landfill. The non-toxic binder (no chlorine or phthalates) is fully recyclable and thus lives up to the future standards of the industry.

Textile innovator Devan Chemicals, known for its tailor-made flame retardant solutions, was called in to develop the flame retardant back coating, which is compliant with the Airbus and Boeing safety standards. “Based on many years of experience and competences in customer related developments, improving recycling rates is getting more and more important”, says Dirk Vanpachtenbeke, R&D manager Flame Retardants at Devan. “We are very proud that, together with Anker and Shark Solutions, we can contribute to this rising demand for products that meet the standards of a circular economy solution.”

In other news, Anker and Devan are already working on a new project, which includes Devan’s antimicrobial/viral-reducing technology. Recently, Devan published test results on the activity of their technology (BI-OME®) against SARS-CoV-2 and other viruses. According to independent testing, BI-OME is proven to achieve 99% and higher virus reduction, including of SARS-COV-2, on samples before washing and retains 98.5% even after 25 wash cycles. This technology has been recognized with the 2020 European Technology Innovation Leadership Award by Frost & Sullivan.

Source:

Devan Chemicals NV / Marketing Solutions NV

Gewebte integral gefertigte Implantate für das Herz-Kreislaufsystem © ITM/TU Dresden. Gewebte integral gefertigte Implantate für das Herz-Kreislaufsystem.
12.10.2020

ITM-Wissenschaftler für Otto von Guericke-Preis der AiF 2020 nominiert

  • Maßgeschneiderte integral gefertigte Implantate mittels einer neuartigen Webtechnologie

Das Wissenschaftler-Team Ronny Brünler und Phillip Schegner vom Institut für Textilmaschinen und Textile Hochleistungswerkstofftechnik (ITM) der TU Dresden wurde für ihre Entwicklungen, die maßgeblich in dem IGF-Forschungsvorhaben 19922 BR umgesetzt worden sind, für den diesjährigen Otto von Guericke-Preis der AiF nominiert.

Prof. Chokri Cherif, Institutsdirektor des ITM freut sich mit seinem Team sehr über die kontinuierlichen Forschungserfolge, die am ITM in zahlreichen interdisziplinären und branchenübergreifenden Forschungsvorhaben für insbesondere biomedizinische Anwendungen erzielt werden. „Nachdem wir bereits 2015 mit dem Otto von Guericke-Preis ausgezeichnet worden sind, ist die erneute Nominierung für diesen hochkarätigen Preis eine besondere Würdigung und gleichzeitig auch weiterer Ansporn für die Umsetzung unserer Forschungsergebnisse in die Industrie.“

  • Maßgeschneiderte integral gefertigte Implantate mittels einer neuartigen Webtechnologie

Das Wissenschaftler-Team Ronny Brünler und Phillip Schegner vom Institut für Textilmaschinen und Textile Hochleistungswerkstofftechnik (ITM) der TU Dresden wurde für ihre Entwicklungen, die maßgeblich in dem IGF-Forschungsvorhaben 19922 BR umgesetzt worden sind, für den diesjährigen Otto von Guericke-Preis der AiF nominiert.

Prof. Chokri Cherif, Institutsdirektor des ITM freut sich mit seinem Team sehr über die kontinuierlichen Forschungserfolge, die am ITM in zahlreichen interdisziplinären und branchenübergreifenden Forschungsvorhaben für insbesondere biomedizinische Anwendungen erzielt werden. „Nachdem wir bereits 2015 mit dem Otto von Guericke-Preis ausgezeichnet worden sind, ist die erneute Nominierung für diesen hochkarätigen Preis eine besondere Würdigung und gleichzeitig auch weiterer Ansporn für die Umsetzung unserer Forschungsergebnisse in die Industrie.“

In dem nominierten IGF-Forschungsvorhaben wurde die Entwicklung neuartiger textiler Herzklappenprothesen, die exakt an die anatomische Form angepasst und minimalinvasiv im Herz platzierbar sind, exzellent umgesetzt.

Für die Behandlung defekter Herzklappen stehen mechanische und biologische Klappen zur Verfügung. Die neuartigen gewebten Herzklappenprothesen sollen die Vorteile der beiden Herzklappentypen vereinen: unbegrenzte Lebensdauer, keine lebenslangen Einnahmen von Antikoagulationsmedikamenten und minimal invasive Operation. Ferner können die textilen Herzklappen zeit- und kostensparend mit hoher Reproduzierbarkeit und Qualität gefertigt werden. Mit Computertomographie-Daten wird ein 3D-Modell generiert, das in mehreren Schritten weiterentwickelt und als maschinenlesbarer Code in eine konventionelle Webmaschine übertragen wird. Somit wird eine reproduzierbare, kostengünstige Herstellung von neuartigen textilen, nahtlosen Schlauchstrukturen mit definierter Ventilfunktion mit gleichzeitig hoher Produktsicherheit realisiert.

Das überzeugte die Jury des Wissenschaftlichen Rates der Arbeitsgemeinschaft industrieller Forschungsvereinigungen (AiF), die das erfolgreiche Projekt in die Finalrunde um das "IGF-Projekt des Jahres 2020" wählte.

Das IGF-Vorhaben 19922 BR der Forschungsvereinigung Forschungskuratorium Textil e.V. wurde über die AiF im Rahmen des Programms zur Förderung der industriellen Gemeinschaftsforschung und -entwicklung (IGF) vom Bundesministerium für Wirtschaft und Energie aufgrund eines Beschlusses des Deutschen Bundestages gefördert.

 

 

More information:
ITM Herzklappenersatz
Source:

ITM / TU Dresden

(c) Tonello
12.10.2020

Tonello at DenimsandJeans Virtual Show

“When it comes to working on new developments, we always start from new ideas and the constant research that starts from a concept that becomes reality, by increasingly raising the bar of sustainability” said Alice Tonello, R&D and Marketing Director of Tonello. “The research for technologies and solutions have always been part of our DNA, is a daily commitment to the environment, the market, our people and all human beings with their needs.  Based on this vision, two revolutionary patent-pending process, are born, Wake and OBleach, that allow to create incredible and totally responsible effects on garments” continued Alice Tonello.

This is how The Laundry (R)Evolution was born: a radically new conception thought to simplify and optimize the entire garment finishing process.

It involves only 2 technologies in the entire finishing cycle, reducing waste and optimizing resources: LaserBlaze, and The All-in-One-System. Metro is used, a software that processes real data, in real time to check all laundry consumption, optimizing processing times and improving performance.

“When it comes to working on new developments, we always start from new ideas and the constant research that starts from a concept that becomes reality, by increasingly raising the bar of sustainability” said Alice Tonello, R&D and Marketing Director of Tonello. “The research for technologies and solutions have always been part of our DNA, is a daily commitment to the environment, the market, our people and all human beings with their needs.  Based on this vision, two revolutionary patent-pending process, are born, Wake and OBleach, that allow to create incredible and totally responsible effects on garments” continued Alice Tonello.

This is how The Laundry (R)Evolution was born: a radically new conception thought to simplify and optimize the entire garment finishing process.

It involves only 2 technologies in the entire finishing cycle, reducing waste and optimizing resources: LaserBlaze, and The All-in-One-System. Metro is used, a software that processes real data, in real time to check all laundry consumption, optimizing processing times and improving performance.

The All-in-One System performs all washing operations by integrating 4 sustainable technologies into a single machine: ECOfree 2, which uses ozone in both the water and air; NoStone® for authentic and pumice-free stone-wash effects; UP, for washing processes with at least 50% less water; Core, a nebulizing system improving performance and reducing water consumption.

In terms of effects, the latest results of the Laundry (R)evolution are OBleach and Wake.

OBleach is the new Tonello patent-pending process which, by using only ozone, “returns to the future” with an authentic, sustainable and cool Bleach.

Wake is the first totally natural dyeing system. In fact, it uses only plants and vegetable waste, organic items like flowers, berries and roots left to dry and infuse, without harmful chemicals additives.

Tonello will be live during DenimsandJeans Virtual Show on October 14th and 15th.

Source:

EFFE-BI SRL PR & COMMUNICATION