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04.08.2021

Autumn Editions of Intertextile Shanghai and Yarn Expo postponed

In light of recent Covid-19 cases in China, the Autumn Editions of Intertextile Shanghai Apparel Fabrics, Intertextile Shanghai Home Textiles and Yarn Expo will be rescheduled to 9 – 11 October 2021. The fairs were originally due to take place at the end of August at the National Exhibition and Convention Center (Shanghai).

Ms Wendy Wen, Senior General Manager of Messe Frankfurt (HK) Ltd explained: “To comply with the government guidelines for pandemic containment and following discussions with our stakeholders, we have made the decision to postpone the fairs from their original August timing. To allow our exhibitors and buyers as much time as possible to plan ahead, we have already confirmed new dates with the fairground for the three concurrent fairs: 9 – 11 October.”

In light of recent Covid-19 cases in China, the Autumn Editions of Intertextile Shanghai Apparel Fabrics, Intertextile Shanghai Home Textiles and Yarn Expo will be rescheduled to 9 – 11 October 2021. The fairs were originally due to take place at the end of August at the National Exhibition and Convention Center (Shanghai).

Ms Wendy Wen, Senior General Manager of Messe Frankfurt (HK) Ltd explained: “To comply with the government guidelines for pandemic containment and following discussions with our stakeholders, we have made the decision to postpone the fairs from their original August timing. To allow our exhibitors and buyers as much time as possible to plan ahead, we have already confirmed new dates with the fairground for the three concurrent fairs: 9 – 11 October.”

“I would like to thank the participants of all three fairs for their understanding and ongoing support as we continue to operate in uncertain times. We remain dedicated to providing a quality international trading platform for three sectors for the autumn / winter sourcing season, and our overseas suppliers will still be able to participate through our hybrid exhibition scheme if they are unable to be in Shanghai in-person.”

Exhibitors or visitors with any queries about these fairs should email textile@hongkong.messefrankfurt.com, or visit the fairs’ respective websites:
•    Intertextile Shanghai Apparel Fabrics: https://intertextileapparel.hk.messefrankfurt.com/
•    Intertextile Shanghai Home Textiles: https://intertextilehome.hk.messefrankfurt.com/
•    Yarn Expo: www.yarnexpochina.com

Intertextile Shanghai Apparel Fabrics is co-organised by Messe Frankfurt (HK) Ltd; the Sub-Council of Textile Industry, CCPIT; and the China Textile Information Centre. The co-organisers of Yarn Expo are Messe Frankfurt (HK) Ltd and the Sub-Council of Textile Industry, CCPIT. Intertextile Shanghai Home Textiles is co-organised by Messe Frankfurt (HK) Ltd; the Sub-Council of Textile Industry, CCPIT; and the China Home Textile Association (CHTA).

20.07.2021

Hexcel: Speeding up new Product Development Cycles for Rassini

Hexcel, a global leader in advanced composites technologies, confirms that its HexPly® M901 prepreg system has been selected by Rassini, a Mexico-based technology leader in composite vehicle suspension systems, to speed up prototype and new product development cycles, reducing overall time to market with an easy to process material solution that enables effective early-stage design screening and cost-effective production.  

As a specialist in the mass production of composite helper leaf springs for various leading OEMs, Rassini continuously develops innovative new suspension component designs. Due to cost and timing, however, these new products cannot easily be prototyped using conventional high-pressure resin transfer molding (HP-RTM) technology.

Hexcel, a global leader in advanced composites technologies, confirms that its HexPly® M901 prepreg system has been selected by Rassini, a Mexico-based technology leader in composite vehicle suspension systems, to speed up prototype and new product development cycles, reducing overall time to market with an easy to process material solution that enables effective early-stage design screening and cost-effective production.  

As a specialist in the mass production of composite helper leaf springs for various leading OEMs, Rassini continuously develops innovative new suspension component designs. Due to cost and timing, however, these new products cannot easily be prototyped using conventional high-pressure resin transfer molding (HP-RTM) technology.

With more than 15 years of experience in delivering glass fiber prepregs for the serial production of composite leaf springs, Hexcel developed its high-performance HexPly M901 prepreg system specifically for this type of application. HexPly M901 combines the right level of structural performance required with simple processing, providing Rassini with a reliable material solution optimized for rapid development and fine-tuning iterations.

HexPly M901 is a high Tg epoxy resin prepreg system specifically developed for structural components that will be exposed to harsh thermal and environmental conditions.  With short cure cycles of 10 minutes and below producing excellent green, or handling, strength of the composite part for demolding and unidirectional glass fiber aerial weights up to 1,600gsm, HexPly M901 delivers a powerful combination of benefits for suspension component applications.

More information:
Hexcel’s HexPly® Hexcel
Source:

Hexcel Corporation

Photo: norda: DSMPMPR010
14.07.2021

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

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

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

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

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

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

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

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

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

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

Source:

EMG for DSM