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 Lenzing investiert EUR 40 Mio. in weitere Verbesserung des ökologischen Fußabdrucks am Standort Lenzing (c) Lenzing AG
09.10.2019

Lenzing invests EUR 40 mn to further improve the ecological footprint of the Lenzing site

  • Construction of a new air purification and sulfur recovery plant
  • Further improvement of the exhaust emission values at the Lenzing site
  • Important step in achieving the CO2 targets of the Lenzing Group

Lenzing – The Lenzing Group is a global leader in the climate-friendly and sustainable production of wood-based textile fibers. Lenzing announced its climate targets in August of this year. By 2030, the company aims to reduce its specific CO2 emissions per ton of manufactured pulp and fibers by 50 percent. By the year 2050, the Lenzing Group will no longer generate any net CO2 emissions.

Lenzing‘s Management Board has now resolved to invest EUR 40 mn to expand the production of the raw material sulfuric acid at the Lenzing site. This comprises an important milestone on the path towards climate neutrality. In the future, a new air purification and sulfur recovery plant will not only optimize the company’s self-sufficiency for this raw material and enhance process reliability but improve environmental protection within the context of a clear forward-looking strategy.

  • Construction of a new air purification and sulfur recovery plant
  • Further improvement of the exhaust emission values at the Lenzing site
  • Important step in achieving the CO2 targets of the Lenzing Group

Lenzing – The Lenzing Group is a global leader in the climate-friendly and sustainable production of wood-based textile fibers. Lenzing announced its climate targets in August of this year. By 2030, the company aims to reduce its specific CO2 emissions per ton of manufactured pulp and fibers by 50 percent. By the year 2050, the Lenzing Group will no longer generate any net CO2 emissions.

Lenzing‘s Management Board has now resolved to invest EUR 40 mn to expand the production of the raw material sulfuric acid at the Lenzing site. This comprises an important milestone on the path towards climate neutrality. In the future, a new air purification and sulfur recovery plant will not only optimize the company’s self-sufficiency for this raw material and enhance process reliability but improve environmental protection within the context of a clear forward-looking strategy.

Improved exhaust emission performance

The new plant represents an important contribution towards implementing the sustainability strategy of the Lenzing Group, and also helps to ensure an even higher level of environmental compatibility of all production operations at the Lenzing site. The application of state-of-the-art technologies will further improve exhaust emission values. Furthermore, the new facility will help further reduce the use of fossil fuels by generating steam which will, in turn, be converted into electricity. In this way, it will also support the energy self-sufficiency of the company’s operations in Lenzing.

Improved CO2 scorecard

As a result, the production plant in Lenzing will reduce its annual CO2 emissions by 15,000 tons. This is an important step towards further advancing the company’s ambitious plans in the coming years and also strengthen Lenzing’s leadership role as a driver of ecologically sustainable industry. “On the basis of these investments, Lenzing is taking the next step in achieving its climate targets. At the same time, it will also reach a significantly higher level of autonomy with respect to a vital raw material”, states Stefan Doboczky, Chief Executive Officer of Lenzing.

More information:
Lenzing Group Nachhaltigkeit Fasern
Source:

Lenzing AG

(c) Chomarat
09.10.2019

Chomarat fabrics at the KraussMaffei booth during K Messe 2019

Chomarat Group’s composite reinforcements will be featured at the KraussMaffei stand during the next K Messe in Düsseldorf. Chomarat has created a glass reinforcement adapted to the mass production of automotive parts, helping to lighten leaf springs by 60% compared to metal.

Automotive: Producing 60% lighter leaf springs for car's underbody
The new leaf springs made of composites are 60% lighter than their pendants made of steel thanks to KraussMaffei process and the involvement of a network of partners, including Chomarat with G-PLY™ glass reinforcement. Their strength can be deliberately increased in sections where it is required and the corrosion resistance offers further added value.

Chomarat Group’s composite reinforcements will be featured at the KraussMaffei stand during the next K Messe in Düsseldorf. Chomarat has created a glass reinforcement adapted to the mass production of automotive parts, helping to lighten leaf springs by 60% compared to metal.

Automotive: Producing 60% lighter leaf springs for car's underbody
The new leaf springs made of composites are 60% lighter than their pendants made of steel thanks to KraussMaffei process and the involvement of a network of partners, including Chomarat with G-PLY™ glass reinforcement. Their strength can be deliberately increased in sections where it is required and the corrosion resistance offers further added value.

“We created the fabrics, when Engenuity developed the component, Huntsman supplied the matrix system made of epoxy resin, Johns Manville supplied the glass fibers, Schmidt & Heinzmann manufactured the preforms, Alpex designed the RTM mold and Hufschmied (Bobingen, Germany) took charge of post-mold processing of the component by milling. KraussMaffei has taken over the project management for Hengrui and coordinates the project with the partners.” Francisco De Oliveira at Chomarat explains.

More information:
CHOMARAT K 2019
Source:

AGENCE APOCOPE

Saurer’s highly efficient FusionTwister at ShanghaiTex 2019 (c) Saurer AG
FusionTwister for staple fibre yarns
26.09.2019

Saurer’s highly efficient FusionTwister at ShanghaiTex 2019

In its 19th year, the international textile industry exhibition ShanghaiTex will take place from 25 to 28 November 2019. Saurer Twisting Solutions would be delighted to welcome customers and visitors to Saurer's Stand D40 in Hall E1. The focus is on the highly efficient FusionTwister for staple fibre yarns.

The FusionTwister sets the benchmark for the cost-effective production of two-for-one twisted staple fibre yarns. In order to achieve this, we have taken into account the three main factors affecting our customers’ profitability, namely energy, economics and ergonomics.

In its 19th year, the international textile industry exhibition ShanghaiTex will take place from 25 to 28 November 2019. Saurer Twisting Solutions would be delighted to welcome customers and visitors to Saurer's Stand D40 in Hall E1. The focus is on the highly efficient FusionTwister for staple fibre yarns.

The FusionTwister sets the benchmark for the cost-effective production of two-for-one twisted staple fibre yarns. In order to achieve this, we have taken into account the three main factors affecting our customers’ profitability, namely energy, economics and ergonomics.

The machines’ reliably low energy consumption is an important characteristic for decision-makers to take into account. Achieved by means of an optimised spindle drive as well as a great variety of spindle and feeding sizes for all kinds of applications, it is the main element in the equation of production costs.

Power consumption and costs are closely related, with energy efficiency positively influencing the return on investment, since it is daily challenge to process the maximum feeding weight while keeping electricity usage at a comfortable level.

The machine’s short set-up times, fast air threading and easy handling were key considerations with regard to optimising ergonomics.

ROICA™ launches its new smart strategy at Intertextile Shanghai © ROICA™
Aurora line by Wolford with ROICA(TM) V550
25.09.2019

ROICA™ launches its new smart strategy at Intertextile Shanghai

Shanghai - ROICA™ lands in Shanghai to showcase its complete range of premium stretch fibers for the modern wardrobe and disclose its visionary approach and strategy for a cutting-edge and sustainable fashion.

On show, leading material innovator Asahi Kasei introduces a premium stretch fiber starting from the ultimate ROICA Eco-Smart™ Family. The certified and multi-awarded range has astonished the textile world for its hyper-performative features. “The new premium stretch is synonymous of transformation: from standard to speciality, from basic to special, from ordinary to clever and from standard to Smart.” Explains Shinichiro Haga, Senior Executive Manager - ROICA™ Division.

Sustainability and a responsible approach are the true core of research and development to create high-tech engineered yarns.Such visionary imprint imbues all ROICA™ innovations:

Shanghai - ROICA™ lands in Shanghai to showcase its complete range of premium stretch fibers for the modern wardrobe and disclose its visionary approach and strategy for a cutting-edge and sustainable fashion.

On show, leading material innovator Asahi Kasei introduces a premium stretch fiber starting from the ultimate ROICA Eco-Smart™ Family. The certified and multi-awarded range has astonished the textile world for its hyper-performative features. “The new premium stretch is synonymous of transformation: from standard to speciality, from basic to special, from ordinary to clever and from standard to Smart.” Explains Shinichiro Haga, Senior Executive Manager - ROICA™ Division.

Sustainability and a responsible approach are the true core of research and development to create high-tech engineered yarns.Such visionary imprint imbues all ROICA™ innovations:

  • ROICA Eco-Smart™ family: A true world-first with the most contemporary sustainable range of responsibly produced premium ingredients. ROICA Eco-Smart™ family offers 2 sustainably designed stretch yarns

- ROICA™ EF is GRS by Textile Exchange certified, thanks to the fact that more than 50% of yarn content comes from the recycling of pre-consumer waste.
- ROICA™ V550 yarn got the Cradle-to-Cradle® Innovation Institute’s GOLD LEVEL Material Health certificate for impacts on human and environmental health. This yarn is also Hohenstein Environment Compatibility Certificated, signifying at its end-of-life, ROICA ™ yarn smartly breaks down without releasing harmful materials.

  • ROICA Feel Good™ family: A unique range of advanced stretch yarns that deliver personal performance and measurable wellness, freshness and comfort metrics for travel, sport, leisure and more.
     
  • ROICA Colour Perfect™ family: A range of yarns that can give excellent, flawless and world unique colour dimensions in advanced fit solutions.
     
  • ROICA Resistance™ family: A high performance range of stretch solutions with performance resistance designed for match particular applications.
     
  • ROICA Contour™ family: A range of yarns that create new shaping, stretch and silhouette solutions for a calibrated fit, effortless control, softness, comfort and support.

 

ROICA™ already entered the most advanced collections of leading brands as: Wolford for exceptional European Skinwear including legwear, Sarah Borghi for hosiery, SITA Active for Smart pret-a-porter,  Daquini for athleisure, Livy for sensual lingerie, SCOTT Racing Team for cycling uniforms, Closed for denim, Un-Sanctioned for running suits, Vitamine A for beachwear and many others.

In Shanghai, ROICA™ is set to stand out as leader in Smart Innovation. As tangible proof of this, the company brings to Intertextile Shanghai some of its ultimate collaborations across China and the Far East.

Source:

GB Network Marketing & Communication

23.09.2019

Tape inserts offer big potential for injection molding parts

Market and technology analysis confirms big potential for tape inserts in the injection molding process. Following the finalization of a major consortial project led by the Aachen Center for Integrative Lightweight Production (AZL) and the Institute for Plastics Processing at RWTH Aachen University (IKV), the result is clear: tape inserts offer enormous potential for injection molding parts. For suitable components, product costs and component properties can be positively influenced.

In cooperation with 20 industrial partners, the two renowned Aachen research institutes AZL and IKV carried out a detailed analysis of tape inserts in injection molded components over a period of eight months. The tapes, which are a few tenths of a millimeter thick, are continuous fibers, typically made of glass or carbon, completely impregnated and embedded in a thermoplastic matrix. The tapes can be precisely aligned to the loads in a component and are used primarily in high-performance applications with the aim of weight reduction. The aim of the conducted analysis was the identification of potential applications and the estimation of a wider range of applications.

Market and technology analysis confirms big potential for tape inserts in the injection molding process. Following the finalization of a major consortial project led by the Aachen Center for Integrative Lightweight Production (AZL) and the Institute for Plastics Processing at RWTH Aachen University (IKV), the result is clear: tape inserts offer enormous potential for injection molding parts. For suitable components, product costs and component properties can be positively influenced.

In cooperation with 20 industrial partners, the two renowned Aachen research institutes AZL and IKV carried out a detailed analysis of tape inserts in injection molded components over a period of eight months. The tapes, which are a few tenths of a millimeter thick, are continuous fibers, typically made of glass or carbon, completely impregnated and embedded in a thermoplastic matrix. The tapes can be precisely aligned to the loads in a component and are used primarily in high-performance applications with the aim of weight reduction. The aim of the conducted analysis was the identification of potential applications and the estimation of a wider range of applications.

The project was divided into several phases: Phase I was used to identify the current status. In 20 interviews with representative companies of the injection molding industry, the researchers gathered why tape inserts have rarely been taken into account so far, when defining the material concepts to be analyzed. The lack of information about the material class, the procedure and tools for the development process and the necessary production technologies were cited as major challenges. This is where the consortium will take action and provide comprehensive information during the “Technology Information Day” on the extensively prepared state of the art and the high degree of maturity of the supply chain. Based on the status quo, they developed a methodology for analyzing the technological and economic potential of tape inserts in injection molding applications.

Both the previous results and the planned follow-up projects are the subject of the “Technology Information Day" at K 2019, to which the companies involved in the study, the AZL and IKV, invite all companies along the value chain, from raw material manufacturers to injection molders to OEMs. (Date: 18th October 2019, 10:00 am to 1:30 pm, Trade Fair Düsseldorf CCD South, Room 002).

The consortium, amongst others consisting of Asahi Kasei Europe GmbH, BASF SE, Borealis AG, BÜFA Thermoplastic Composites GmbH & Co. KG, ENGEL AUSTRIA GmbH, Huesker Synthetic GmbH, LG Hausys R&D Center, Mitsui Chemicals, Nippon Electric Glass, Polyscope Polymers BV, POLYTEC GROUP, Simcon kunststofftechnische Software GmbH, SABIC and Toray International Europe GmbH, is inviting to the “Technology Information Day” at K 2019. The goal is to inform about the technology and to identify topics for future collaboration.

Source:

AZL Aachen GmbH

Tiger Drone (c) COBRA International / HG Robotics
19.09.2019

COBRA delivers first 100 composite fuselage covers for cutting-edge drones

COBRA International is collaborating with HG Robotics, a leading drone manufacturer that specializes in unmanned aerial vehicles (UAVs) for the agricultural market, on a composite fuselage cover for the cutting-edge Tiger Drones.

Undertaking a full range of services with HG Robotics and having been involved from the outset: from the design and engineering through to the prototyping of the composite drone fuselage cover, COBRA has now delivered nearly 100 sets and will produce approximately 500 units throughout 2019.

COBRA International is collaborating with HG Robotics, a leading drone manufacturer that specializes in unmanned aerial vehicles (UAVs) for the agricultural market, on a composite fuselage cover for the cutting-edge Tiger Drones.

Undertaking a full range of services with HG Robotics and having been involved from the outset: from the design and engineering through to the prototyping of the composite drone fuselage cover, COBRA has now delivered nearly 100 sets and will produce approximately 500 units throughout 2019.

The multi-rotor Tiger Drones typically carry spraying equipment and can also carry high definition cameras that provide a wide range of field information. Farmers can measure land profiles, identify any problem plants or areas and manage their cultivation in the most efficient way. The 420 mm square shaped fuselage cover protects the drone’s electronic controls and forms an aerodynamic fairing between the central fuselage and the craft’s 4 rotor arms.
 
The COBRA Design and Development team selected a composite laminate of glass fibre reinforcements for the cover – which don’t interfere with GPS signals used by the drone - and combined these with epoxy laminating resins in a hand laminated, vacuum bag consolidated production process.

COBRA also designed all of the mould tools for the project. The 2-piece aluminium mould was produced by one of COBRA’s long-term tooling partners. This metallic tooling provides an excellent surface finish to the part with absolutely minimal trimming and finishing required.   Moulded parts can go swiftly through a painting and clear coating process before final inspection and delivery to the client.

Danu Chotikapanich, CEO of COBRA International comments: “Our collaboration with HG Robotics is going well, and we are hoping to collaborate further with them on other multi-rotor and fixed wing VTOL (vertical take-off and landing) drone models in the future. These are COBRA’s first parts for the agricultural industry, and they provide an exciting vision as to just a few of the possibilities for lightweight composites in this area and also in the wider commercial UAV market as a whole.”

More information:
glass fibers COBRA
Source:

COBRA International Ltd,

18.09.2019

Hexcel to Exhibit at CAMX 2019

STAMFORD, Conn. – At this year’s CAMX conference, taking place on September 24-26 in Anaheim, CA (Booth L42), Hexcel will promote its broad portfolio of composite innovations for aerospace and industrial applications.

On display at the Hexcel booth, visitors will see an integrated wing panel demonstrator made with HiMax™ non-crimp reinforcements that were specially developed to complement a new generation of infusion resin systems. Visitors will also see a wing box demonstrator made from HiTape® dry carbon reinforcements. Both parts were injected with Hexcel’s RTM6 infusion resin and incorporate a toughening veil to enhance mechanical properties to meet the structural requirements for aerospace parts.

STAMFORD, Conn. – At this year’s CAMX conference, taking place on September 24-26 in Anaheim, CA (Booth L42), Hexcel will promote its broad portfolio of composite innovations for aerospace and industrial applications.

On display at the Hexcel booth, visitors will see an integrated wing panel demonstrator made with HiMax™ non-crimp reinforcements that were specially developed to complement a new generation of infusion resin systems. Visitors will also see a wing box demonstrator made from HiTape® dry carbon reinforcements. Both parts were injected with Hexcel’s RTM6 infusion resin and incorporate a toughening veil to enhance mechanical properties to meet the structural requirements for aerospace parts.

With 50 years of experience and the most qualified carbon fiber positions on aerospace programs in the industry with its comprehensive range of high-strength, high-strain PAN-based carbon fibers, Hexcel continues to innovate and is introducing a new fiber to its portfolio. HexTow® HM54 combines high modulus and high tensile strength, which allows structural designers to achieve higher safety margins for both stiffness and strength-critical applications. HexTow® carbon fibers are excellent not only for aerospace applications but also industrial and recreational applications. HexTow® carbon fibers are excellent not only for aerospace applications but also industrial and recreational applications, examples of golfing applications will be on display.

Additive manufacturing is on the forefront of innovation for composite technologies, and Hexcel is leading the way with its HexAM® additive manufacturing process. HexAM® additive manufacturing combines high performance PEKK thermoplastics with carbon fiber to produce flight-ready 3D printed HexPEKK® parts. HexPEKK® structures offer significant weight, cost and time-to-market reductions, replacing traditional cast or machined metallic parts in highly demanding aerospace, satellite and defense applications.

HexPly® M77 snap-cure prepregs are yet another example of Hexcel technology leading the way. HexPly® M77HF, the latest member of this quick-curing prepreg family, is revolutionizing the world of composites for high-performance sporting goods with its faster production times and excellent surface quality. It will be featured in the Hexcel booth in two products – a carbon fiber Goode water ski which is setting records in the competitive world with its precision and durability, and in a HED cycling wheel noted for its aerodynamics and light weight.

Among Hexcel’s latest technologies are the RF Interference Control materials made by ARC Technologies, a Hexcel company. A selection of these industry-leading custom RF / EMI and microwave absorbing composite materials for military, aerospace and industrial applications will be on display at the Hexcel booth.

HexForce® bias weave woven reinforcements are a patented solution to optimize material usage. These bias weave reinforcements are continuous rolls of carbon fiber fabric in which the warp and weft yarns are oriented on the bias at +/- 45° which can reduce prepreg waste up to 60%. Visitors at CAMX will be able to see this new woven reinforcement and learn more.

Source:

AGENCE APOCOPE

The lucky winner with the certificate, from left to right: Professor Jens Ridzewski (AVK), Sven Schöfer (ITA), Dr Rudolf Kleinholz (AVK) (c) Reed Exhibitions, Oliver Wachenfeld
The lucky winner with the certificate, from left to right: Professor Jens Ridzewski (AVK), Sven Schöfer (ITA), Dr Rudolf Kleinholz (AVK)
17.09.2019

ITA is AVK innovation prize winner 2019 in the category "Research and Science”

  • Reduction of material usage by up to 50 percent through innovative draping strategy in the production of fibre composite materials

In fibre reinforced plastic (FRP) production, stamp forming is one of the most economical processes for automated large-scale production, e.g. in the BMW i-series. However, the current processes are susceptible to draping errors and a high proportion of waste. An innovative process developed at the Institut für Textiltechnik of RWTH Aachen University, short ITA, can now significantly reduce the scrap rate and reduce the waste rate of high-priced reinforcing textiles, such as carbon fibre textiles, by up to 50 percent. Sven Schöfer from ITA achieved this effect with his work "Development of a textile-based material feed to increase the preform quality during stamp forming of reinforcing layers". On 10 September 2019, he won the third AVK Innovation Prize in the "Research and Science" category at Composite Europe in Stuttgart, Germany.

  • Reduction of material usage by up to 50 percent through innovative draping strategy in the production of fibre composite materials

In fibre reinforced plastic (FRP) production, stamp forming is one of the most economical processes for automated large-scale production, e.g. in the BMW i-series. However, the current processes are susceptible to draping errors and a high proportion of waste. An innovative process developed at the Institut für Textiltechnik of RWTH Aachen University, short ITA, can now significantly reduce the scrap rate and reduce the waste rate of high-priced reinforcing textiles, such as carbon fibre textiles, by up to 50 percent. Sven Schöfer from ITA achieved this effect with his work "Development of a textile-based material feed to increase the preform quality during stamp forming of reinforcing layers". On 10 September 2019, he won the third AVK Innovation Prize in the "Research and Science" category at Composite Europe in Stuttgart, Germany.

Current process
In stamp forming, clamping grippers are usually used in industry to feed the stacked individual layers to the forming process and position them on the lower tool via a clamping frame or hold-down device. Due to the clamping grippers, the cutting proportion of cost-intensive reinforcing textiles is high, as additional material at the textile edge is necessary with clamping systems. Other approaches to feeding the reinforcing semi-finished product during forming and simultaneously improving the draping quality are also not economical: they are usually only designed for certain textile cuts, cannot be automated, are prone to errors or are expensive special solutions.

There is currently no system in the industry that can apply retention forces along a final contour with low waste and remains flexible in terms of geometry.

Innovative approach of Sven Schöfer
The innovative process developed by Sven Schöfer works with a detachable textile joint, a so-called tufting seam. It allows the single layers to slide off during the forming process under a retention force dependent on the seam design.

This reduces or completely eliminates draping errors in previously critical areas, even with complex preform geometries. This leads to a significant increase in preform quality and a reduction in scrap rates. The process is also highly efficient, as tensile forces can be applied to any component geometry on near-net-shape blanks. This reduces the material input by up to 50 percent.

Source:

ITA – Institut für Textiltechnik

12.09.2019

Lenzing contracts Wood to deliver world´s largest lyocell plant

partner confirms start-up date of the project in Thailand

With the recently announced plans to establish a lyocell production facility in Thailand, the Lenzing Group is taking an important step in meeting the strong demand for lyocell fibers and is further strengthening the company´s position as an industry leader in the specialty cellulosic fibers market. The proposed plant will be the largest lyocell plant in the world, with an annual capacity of 100,000 tons. The total investment volume for the first production line, including infrastructure and site development, amounts to approximately EUR 400 million. Up to four such lines can be potentially integrated and operated on the site. The project is of great importance to Lenzing as it is the first step in bringing lyocell production to Asia, featuring the largest markets, the most important customers and the most extensive growth potential in specialty fiber production.

partner confirms start-up date of the project in Thailand

With the recently announced plans to establish a lyocell production facility in Thailand, the Lenzing Group is taking an important step in meeting the strong demand for lyocell fibers and is further strengthening the company´s position as an industry leader in the specialty cellulosic fibers market. The proposed plant will be the largest lyocell plant in the world, with an annual capacity of 100,000 tons. The total investment volume for the first production line, including infrastructure and site development, amounts to approximately EUR 400 million. Up to four such lines can be potentially integrated and operated on the site. The project is of great importance to Lenzing as it is the first step in bringing lyocell production to Asia, featuring the largest markets, the most important customers and the most extensive growth potential in specialty fiber production.

More information:
Lenzing AG
Source:

Lenzing AG

09.09.2019

Hexcel’s HexAM™ Additive Manufacturing Approved by Boeing

Hexcel Corporation has been approved by Boeing to produce HexPEKK™-100 aerospace structures for major commercial aircraft platforms.

After rigorous review of Hexcel’s proprietary poly-ether-ketone-ketone and carbon fiber material formulation, Hexcel’s superior HexPEKK™-100 end-use components – as well as its highly-controlled HexAM™ additive manufacturing process (which uses selective laser sintering) – are now obtainable through Boeing’s Qualified Provider List (QPL). These HexPEKK™ components will be manufactured-to-print for commercial aerospace applications where complexity, weight reduction, and strong mechanical performance are critical.

Hexcel provides high-rate serial part production with reduced lead-time and at a lower cost than traditional intricately machined aluminum or composite structures. HexPEKK™-100 parts meet interior aircraft smoke and toxicity requirements and are ideal for complex components such as optimized brackets, environmental control system ducts, and castings.

Hexcel Corporation has been approved by Boeing to produce HexPEKK™-100 aerospace structures for major commercial aircraft platforms.

After rigorous review of Hexcel’s proprietary poly-ether-ketone-ketone and carbon fiber material formulation, Hexcel’s superior HexPEKK™-100 end-use components – as well as its highly-controlled HexAM™ additive manufacturing process (which uses selective laser sintering) – are now obtainable through Boeing’s Qualified Provider List (QPL). These HexPEKK™ components will be manufactured-to-print for commercial aerospace applications where complexity, weight reduction, and strong mechanical performance are critical.

Hexcel provides high-rate serial part production with reduced lead-time and at a lower cost than traditional intricately machined aluminum or composite structures. HexPEKK™-100 parts meet interior aircraft smoke and toxicity requirements and are ideal for complex components such as optimized brackets, environmental control system ducts, and castings.

More information:
Hexcel, Airbus Hexcel HexPEKK
Source:

APOCOPE Agency

LENZING™ fibers are fully biodegradable in water, soil and compost (c) Lenzing
30.08.2019

LENZING™ fibers are fully biodegradable in water, soil and compost

  • Organic Waste Systems and TÜV confirm fiber biodegradability also in fresh water
  • All white LENZING™ Viscose, Modal and Lyocell fibers are now certified for all environments
  • Global legislators aim at limiting plastic waste persisting in the environment for centuries
  • EU Single-Use Plastics Directive partly regulates usage of plastic products
  • Biodegradable materials such as wood-based fibers are the best alternative to single-use plastics

The Lenzing Group received confirmation of the full biodegradability of its fibers in fresh water by the independent research laboratory Organic Waste Systems (OWS). The new and existing international certifications conducted by OWS and issued by TÜV Austria verify that LENZING™ Viscose fibers, LENZING™ Modal fibers and LENZING™ Lyocell fibers are biodegradable in all natural and industrial environments: in the soil, compost as well as in fresh and in marine water.

  • Organic Waste Systems and TÜV confirm fiber biodegradability also in fresh water
  • All white LENZING™ Viscose, Modal and Lyocell fibers are now certified for all environments
  • Global legislators aim at limiting plastic waste persisting in the environment for centuries
  • EU Single-Use Plastics Directive partly regulates usage of plastic products
  • Biodegradable materials such as wood-based fibers are the best alternative to single-use plastics

The Lenzing Group received confirmation of the full biodegradability of its fibers in fresh water by the independent research laboratory Organic Waste Systems (OWS). The new and existing international certifications conducted by OWS and issued by TÜV Austria verify that LENZING™ Viscose fibers, LENZING™ Modal fibers and LENZING™ Lyocell fibers are biodegradable in all natural and industrial environments: in the soil, compost as well as in fresh and in marine water.

The biodegradability of cellulosic products and the synthetic fiber polyester was tested in fresh water at OWS according to valid international standards, e.g. ISO 14851. At the end of the trial period, LENZING™ wood-based cellulosic fibers, cotton and paper pulp were shown to be fully biodegradable in fresh water in contrast to synthetic polyester fibers. The fact that synthetic materials are not biodegradable leads to major problems in wastewater treatment plants and potentially marine litter. In turn, this not only harms fish and birds living in and close to the oceans but also all marine organisms and us humans.

“The Lenzing Group operates a truly circular business model based on the renewable raw material wood to produce biodegradable fibers returning to nature after use. This complete cycle comprises the starting point of the core value of sustainability embedded in our company strategy sCore TEN and is the ‘raison d’etre’ of our company”, says Stefan Doboczky, Chief Executive Officer of the Lenzing Group. “In living up to this positioning, we not only enhance the business of our suppliers, customers and partners along the value chain but also improve the state of the entire textile and nonwovens industries.”

Both the textile and nonwovens industries face huge challenges with respect to littering. If current trends continue, the oceans could contain more plastic than fish by 2050. Therefore, legislative bodies worldwide can no longer ignore the issue and have moved towards plastics legislation aimed at limiting the vast amount of waste. In response, European lawmakers issued the Single-Use Plastics Directive currently being transposed into national legislation in the EU member states.

Conventional wet wipes and hygiene products mostly contain plastic and were thus identified as one of the product categories to be singled out. Less polluting alternatives are generally encouraged by NGOs and legislators, e.g. products made of biodegradable wood-based cellulosic fibers. Plastic waste including microplastic can persist in the environment for centuries. In contrast, biodegradable materials are the best alternative to single-use plastics because they fully convert back to nature by definition and thus do not require recycling.

Source:

Corporate Communications & Investor Relations
Lenzing Aktiengesellschaft

Trevira awarded “Systematic Safety” seal of approval © BGHM: "Systematic Safety" seal of approval
27.08.2019

Trevira awarded “Systematic Safety” seal of approval

On 5 August 2019, Trevira received the “Systematic Safety” seal of approval from the German Social Accident Insurance Institution for the Raw Materials and Chemical Industry (Berufsgenossenschaft Rohstoffe und chemische Industrie, BG RCI). The award confirms that Trevira GmbH meets the requirements for systematic and effective occupational health and safety management through the company’s occupational health and safety management system, which helps optimise production workflows and demonstrates the value that Trevira GmbH places on the health and safety of its employees. The “Systematic Safety” award, valid for three years, also certifies that Trevira fully meets the requirements of industry standard ISO 45001:2018. The award was handed over to Trevira CEO Klaus Holz together with management representative Stefan Rauterkus.

On 5 August 2019, Trevira received the “Systematic Safety” seal of approval from the German Social Accident Insurance Institution for the Raw Materials and Chemical Industry (Berufsgenossenschaft Rohstoffe und chemische Industrie, BG RCI). The award confirms that Trevira GmbH meets the requirements for systematic and effective occupational health and safety management through the company’s occupational health and safety management system, which helps optimise production workflows and demonstrates the value that Trevira GmbH places on the health and safety of its employees. The “Systematic Safety” award, valid for three years, also certifies that Trevira fully meets the requirements of industry standard ISO 45001:2018. The award was handed over to Trevira CEO Klaus Holz together with management representative Stefan Rauterkus.

24.07.2019

Autoneum: Revenue growth in a strongly declining market

In a strongly declining market, Autoneum increased revenue in local currencies by 1.9% in the first six months of 2019 thanks to numerous model ramp-ups. At CHF 1 156.1 million, revenue in Swiss francs reached the previous year’s level (CHF 1 159.4 million). All four Business Groups outperformed the market. The turnaround program in North America is showing progress, but the persisting operational inefficiencies at two US plants continue to impact the profitability of the entire Group, as already communicated. Accordingly, EBIT fell to CHF 16.4 million in the first semester, while the anticipated negative net result totaled CHF –6.0 million.

In a strongly declining market, Autoneum increased revenue in local currencies by 1.9% in the first six months of 2019 thanks to numerous model ramp-ups. At CHF 1 156.1 million, revenue in Swiss francs reached the previous year’s level (CHF 1 159.4 million). All four Business Groups outperformed the market. The turnaround program in North America is showing progress, but the persisting operational inefficiencies at two US plants continue to impact the profitability of the entire Group, as already communicated. Accordingly, EBIT fell to CHF 16.4 million in the first semester, while the anticipated negative net result totaled CHF –6.0 million.

The weak global macroeconomic environment, ongoing trade disputes and the resulting uncertainty among car manufacturers and consumers led to a further sharp decline in global light vehicle production in the first half of 2019. In this difficult market environment, Autoneum was able to increase its revenue by 1.9% in local currencies in the first six months compared to the prior-year period, particularly thanks to numerous model ramp-ups. At CHF 1 156.1 million, revenue in Swiss francs reached the prior-year’s level (CHF 1 159.4 million). While the number of vehicles produced in all regions declined, Business Groups (BG) North America, Asia and SAMEA (South America, Middle East and Africa) grew and outperformed the respective market developments, two of them significantly. Only at Business Group Europe did the sharp drop in production volumes among vehicle manufacturers result in fewer call-offs and lower year-on-year revenue.

More information:
Autoneum
Source:

Autoneum

Archroma: New Formaldehyde-Free* Low Temperature Curing Binder © Archroma
Screen capture of Archroma’s video on Archroma's Cool Print system based on the new Helizarin® LTC New, a formaldehyde-free* low temperature curing liquid binder for pigment printing on all kinds of fibers.
22.07.2019

Archroma: New Formaldehyde-Free* Low Temperature Curing Binder

  • For Soft Vibrant And Durable Pigment Prints

Reinach, Switzerland - Archroma, a global leader in color and specialty chemicals towards sustainable solutions, has recently launched at the ITMA exhibition its new Helizarin® LTC New liq, a formaldehyde-free* low temperature curing binder for pigment printing on all kinds of fibers.

Prints are increasingly popular in apparel and interior textiles, as they allow us to express ourselves through vibrant colors and patterns. Consumers are especially drawn to the soft touch of an elegantly printed fabric.

Creating soft and vibrant prints can however be challenging for textile manufacturers: Pigment printing is usually applied to the fabric with a binder that often contains formaldehyde, needs a high temperature for curing, and can make the fabric harsh to the touch.

That is why Archroma developed its new Helizarin® LTC New to allow textile manufacturers to address these challenges.

  • For Soft Vibrant And Durable Pigment Prints

Reinach, Switzerland - Archroma, a global leader in color and specialty chemicals towards sustainable solutions, has recently launched at the ITMA exhibition its new Helizarin® LTC New liq, a formaldehyde-free* low temperature curing binder for pigment printing on all kinds of fibers.

Prints are increasingly popular in apparel and interior textiles, as they allow us to express ourselves through vibrant colors and patterns. Consumers are especially drawn to the soft touch of an elegantly printed fabric.

Creating soft and vibrant prints can however be challenging for textile manufacturers: Pigment printing is usually applied to the fabric with a binder that often contains formaldehyde, needs a high temperature for curing, and can make the fabric harsh to the touch.

That is why Archroma developed its new Helizarin® LTC New to allow textile manufacturers to address these challenges.

The innovation was developed in compliance with “The Archroma Way: safe, efficient, enhanced, it’s our nature”. The approach finds its origin in Archroma’s deep belief that it is possible to make the textile industry sustainable, economically and ecologically.

Helizarin® LTC New is a binder designed for low temperature curing or no curing. This allows to reduce the fixation temperature and time compared to conventional pigment printing processes. In addition, manufacturers will not experience the change of shades that sometimes occur with high temperature processes.

When using Helizarin® LTC New, textile manufacturers can therefore improve the productivity of their printing process and reduce their energy consumption.

Helizarin® LTC New is also a welcome solution for textile manufacturers who do not have curing equipment, since it offers similar to better fastness than commodity binders that have been treated through a full process, and excellent fastness on synthetic fibers such as polyester and polyamide.

When it comes to the final result on the fabric, Helizarin® LTC New allows the creation of soft and durable prints for premium quality articles.

The new product will be the core of Archroma's Cool Print, a complete formaldehyde-free* system that keeps printed textiles soft and durable, and the planet cooler.

The system, which combines Helizarin® LTC New with Luprintol® softening and fixing auxiliaries and Printofix® pigment preparations, allows manufacturers to realize potential savings of up to 30% in processing time, 45% in energy consumption and 44% CO2 emissions – compared to benchmark pigment printing.

Helizarin® LTC New, as well as the Cool Print system, is formaldehyde free* and registered under REACH. It can be used in line with the ZDHC & bluesign® requirements, is compliant with the Oeko-Tex Std 100 Class 1 standard for baby wear, and with the MRSL of the most major brands.

“Helizarin® LTC New was developed by Archroma’s R&D team together with experts at our Global Competence Center for Printing, based in Barcelona, Spain”, says Joaquin Femat, Head of Business Development for Printing, Brand & Performance Textile Specialties, at Archroma. “As The Archroma Way is based on Safe, Efficient and Enhanced as its three pillars, we designed an innovation that offers our customers a balanced combination of resource optimization, safe handling, and controlled effluent. Because it’s our nature!”
 

More information:
Archroma Helizarin Farben
Source:

EMG

10.07.2019

New Consortium HAICoPAS targets innovative solutions for carbon thermoplastic composite structures

Hexcel, Arkema and their partners are pleased to announce that their joint collaborative project “HAICoPAS” has received approval from Bpifrance and the support (grant of 6 million euros) of France’s Investissements d’Avenir program.

HAICoPAS project is a collaborative project with a total amount of 13.5 million euros lead by Hexcel and Arkema and their industrial partners (Ingecal, Coriolis Composites, Pinette Emidecau Industries (PEI) et l'Institut de Soudure), and academia lead by CNRS (PIMM (CNRS - Arts et Métiers ParisTech - le Cnam), LTEN (CNRS - Université de Nantes). This project follows last year’s announcement of the strategic partnership between Hexcel and Arkema to develop high performance PEKK/carbon fiber UD tapes targeting composite parts for primary aerospace structures.

Hexcel, Arkema and their partners are pleased to announce that their joint collaborative project “HAICoPAS” has received approval from Bpifrance and the support (grant of 6 million euros) of France’s Investissements d’Avenir program.

HAICoPAS project is a collaborative project with a total amount of 13.5 million euros lead by Hexcel and Arkema and their industrial partners (Ingecal, Coriolis Composites, Pinette Emidecau Industries (PEI) et l'Institut de Soudure), and academia lead by CNRS (PIMM (CNRS - Arts et Métiers ParisTech - le Cnam), LTEN (CNRS - Université de Nantes). This project follows last year’s announcement of the strategic partnership between Hexcel and Arkema to develop high performance PEKK/carbon fiber UD tapes targeting composite parts for primary aerospace structures.

Source:

AGENCE APOCOPE

(c) Autoneum Management AG
08.07.2019

Alpha-Liner: optimum protection against tire noise

With Alpha-Liner, Autoneum launches its first-ever textile wheelhouse outer liner that not only reduces tire noise substantially, but also convinces with low weight. This newest lightweight component ensures a quiet driving experience and also helps vehicle manufacturers meet current and future noise and emission limits. Alpha-Liner premieres at the “Automotive Acoustics Conference” which takes place in Zurich,
Switzerland, on July 9 and 10.

Alpha-Liner is the latest innovation from Autoneum – a multifunctional wheelhouse outer liner that reduces tire noise with high efficiency and thus makes the vehicle quieter and lighter. Alpha-Liner is based on Autoneum’s newly developed technology, with which noise absorption can be adapted to the specific requirements of the vehicle model for the first time. To achieve this effect, a thin coated surface is applied on the tire side. The porosity of the coating can then be controlled according to the necessary absorption properties, the bottom part of the wheelhouse outer liner requires stronger noise treatment, which maximizes acoustic absorption.

With Alpha-Liner, Autoneum launches its first-ever textile wheelhouse outer liner that not only reduces tire noise substantially, but also convinces with low weight. This newest lightweight component ensures a quiet driving experience and also helps vehicle manufacturers meet current and future noise and emission limits. Alpha-Liner premieres at the “Automotive Acoustics Conference” which takes place in Zurich,
Switzerland, on July 9 and 10.

Alpha-Liner is the latest innovation from Autoneum – a multifunctional wheelhouse outer liner that reduces tire noise with high efficiency and thus makes the vehicle quieter and lighter. Alpha-Liner is based on Autoneum’s newly developed technology, with which noise absorption can be adapted to the specific requirements of the vehicle model for the first time. To achieve this effect, a thin coated surface is applied on the tire side. The porosity of the coating can then be controlled according to the necessary absorption properties, the bottom part of the wheelhouse outer liner requires stronger noise treatment, which maximizes acoustic absorption.

More information:
Alpha-Liner Autoneum
Source:

Autoneum Management AG

Borealis launches recycling technology Borcycle™ and new rPO compound at K 2019 © mtm plastics
25.06.2019

Borealis launches recycling technology Borcycle™ and new rPO compound at K 2019

  • Borealis’ EverMinds™ ambition moves industry one step closer to plastics circularity thanks to new recycling technology and improved recyclate
  • Borealis also announces significant material improvements to existing Purpolen® recyclate materials

Borealis, a leading provider of innovative solutions in the fields of polyolefins, base chemicals and fertilizers, announces the introduction of a new plastics recycling technology, Borcycle™. This evolving technology will be used to produce high-quality compounds made of recycled polyolefins (rPO) such as the newly-launched Borcycle™ MF1981SY, an rPO with over 80% recycled content intended for use in visible appliance parts. Borealis also announces a series of significant material improvements to existing recyclates in the established Purpolen™ brand portfolio. These market launches and product improvements are important technology advancements and thus accelerate the transformation to a circular economy of plastics. Borealis and its wholly-owned subsidiary, mtm plastics, will showcase the new Borcycle technology and recyclate innovations at the K 2019 in October.

  • Borealis’ EverMinds™ ambition moves industry one step closer to plastics circularity thanks to new recycling technology and improved recyclate
  • Borealis also announces significant material improvements to existing Purpolen® recyclate materials

Borealis, a leading provider of innovative solutions in the fields of polyolefins, base chemicals and fertilizers, announces the introduction of a new plastics recycling technology, Borcycle™. This evolving technology will be used to produce high-quality compounds made of recycled polyolefins (rPO) such as the newly-launched Borcycle™ MF1981SY, an rPO with over 80% recycled content intended for use in visible appliance parts. Borealis also announces a series of significant material improvements to existing recyclates in the established Purpolen™ brand portfolio. These market launches and product improvements are important technology advancements and thus accelerate the transformation to a circular economy of plastics. Borealis and its wholly-owned subsidiary, mtm plastics, will showcase the new Borcycle technology and recyclate innovations at the K 2019 in October.

Borealis is leading the industry by applying its Visioneering Philosophy™ to the development and implementation of novel polyolefins-based solutions that enable plastics reuse, recycling, and recovery, and by designing for circularity. These wide-ranging activities are gathered under the symbolic roof of EverMinds™, the Borealis platform dedicated to promoting a more circular mind-set in the industry. By capitalising on its profound expertise in virgin polyolefins and collaborating with value chain partners, Borealis keeps discovering new opportunities for business growth within the circular economy.

Advancing technology to bring about polyolefin circularity

The new technology, Borcycle, transforms polyolefin-based waste streams into recyclate material such as pellets. As a transformative technology, it complements the existing Borealis virgin polyolefins portfolio with a range of pioneering, circular solutions. It unites state-of-the-art technology with the profound Borealis polymer expertise gained over decades.

As a scalable and modular technology, Borcycle has been developed to meet growing market demand for high-quality recyclate. Leading appliance brand owners, for one, have pledged to increase the amount of recycled plastics in their goods. Yet until recently, producers have not been able to rely on a consistent supply of high-quality recyclate. The Borcycle technology will help address this challenge. Compounds made using the Borcycle technology deliver high performance, add value and offer versatility. Producers and brand owners in a range of industries will profit from the availability of high-quality recyclate that helps them meet environmental and regulatory challenges.

“Advancing technology is crucial if our aim is to implement value-creating solutions in the circular sphere,” claims Maurits van Tol, Borealis Senior Vice President, Innovation, Technology & Circular Economy Solutions. “‘Building tomorrow together’ means innovating, collaborating, focussing on the customer, and above all – taking action. The launch of our new recycling technology Borcycle is tangible proof of our commitment to achieving plastics circularity.”

New and improved recyclate for high-end applications

Borcycle™ MF1981SY is the first of several upcoming launches of rPO solutions made under the umbrella of the Borcycle technology. Borcycle™ MF1981SY will be available to Borealis customers in Europe. The compound is an exciting addition to the rPO portfolio because it is a 10% talc-filled compound that contains over 80% recycled material. It offers an ideal balance between stiffness and impact. The compound is especially suited for use in visible black parts, for example in small appliances.

Like its relatives in the mtm plastics family of recyclate materials, Borcycle™ MF1981SY is a truly sustainable offering. Recyclates from mtm save approximately 30% of CO2 emissions compared to virgin materials.

A number of significant improvements have been made to existing recyclate grades in the Purpolen portfolio.

“Mechanical recycling is presently a most eco-efficient method to implement the principles of the circular economy,” explains Guenter Stephan, Head of Mechanical Recycling, Borealis Circular Economy Solutions. “Borealis and mtm plastics are leveraging their respective areas of expertise to make significant progress in achieving polyolefin circularity by upscaling recycling output and ensuring the reliable supply of high-quality plastics recyclate for European producers, in particular.”

More information:
Recycling Borealis Borcycle
Source:

  Borealis AG

(c) Rieter
24.06.2019

Rieter Awarded Large Contract from Egypt

 

  • Contracts signed for seven projects
  • Contract comprises delivery of compact- and ring-spinning systems
  • Total amounts to roughly CHF 180 million
  • Order intakes are anticipated to be realized in 2019; sales posted in the 2020/2021 financial years

Rieter Group has signed contracts with the Cotton & Textile Industries Holding Company, Cairo (Egypt), at the ITMA 2019. These seven projects entail a total of 180 million Swiss francs. The contract comprises delivery of compact- and ring-spinning systems over the next two years. This order is part of a comprehensive modernization program of the Egyptian textile industry. The order intakes are anticipated to be realized in 2019 with sales posted in the 2020/2021 financial years.

The contracts were signed at the ITMA in Barcelona, Spain, by Dr. Ahmed Moustafa Mohamed, Chairman Cotton & Textile Industries Holding Company, and Dr. Norbert Klapper, CEO Rieter.

 

  • Contracts signed for seven projects
  • Contract comprises delivery of compact- and ring-spinning systems
  • Total amounts to roughly CHF 180 million
  • Order intakes are anticipated to be realized in 2019; sales posted in the 2020/2021 financial years

Rieter Group has signed contracts with the Cotton & Textile Industries Holding Company, Cairo (Egypt), at the ITMA 2019. These seven projects entail a total of 180 million Swiss francs. The contract comprises delivery of compact- and ring-spinning systems over the next two years. This order is part of a comprehensive modernization program of the Egyptian textile industry. The order intakes are anticipated to be realized in 2019 with sales posted in the 2020/2021 financial years.

The contracts were signed at the ITMA in Barcelona, Spain, by Dr. Ahmed Moustafa Mohamed, Chairman Cotton & Textile Industries Holding Company, and Dr. Norbert Klapper, CEO Rieter.

Dr. Klapper was very pleased at the formal signing of contracts: “We would like to thank our Egyptian business partners for the confidence they are placing in Rieter by awarding us this contract. Rieter has been the partner of choice of the Egyptian spinning industry for decades. We are delighted to be given the opportunity of making such an important contribution to the modernization of the Egyptian textile industry.”

Source:

Media Relations, Rieter Management AG

(c) HeiQ
04.06.2019

HeiQ announces new subsidiaries: HeiQ China and HeiQ Taiwan

  • Operations, Product Development, Sales and Technical Support Growth

Celine Huang 黄秀蔚 is named Chief Executive Officer for HeiQ Greater China and Ming Wen Liang 梁銘文is named Chief Executive Officer HeiQ Taiwan. Huang, with her background as a general manager of a large player in the same industry brings a total of over 20 years of solid testing lab, agent and country strategies management expertise with an excellent relationship skills with customers, distributors, dealers and end users. She has a chemical engineering degree in dyeing and finishing from China Textile University. Huang has worked in both Australia and China in senior management positions. Huang will lead the group’s Greater China business from the newly created Shanghai office (瑞士海屹科新材料有限公司上海办事处).

  • Operations, Product Development, Sales and Technical Support Growth

Celine Huang 黄秀蔚 is named Chief Executive Officer for HeiQ Greater China and Ming Wen Liang 梁銘文is named Chief Executive Officer HeiQ Taiwan. Huang, with her background as a general manager of a large player in the same industry brings a total of over 20 years of solid testing lab, agent and country strategies management expertise with an excellent relationship skills with customers, distributors, dealers and end users. She has a chemical engineering degree in dyeing and finishing from China Textile University. Huang has worked in both Australia and China in senior management positions. Huang will lead the group’s Greater China business from the newly created Shanghai office (瑞士海屹科新材料有限公司上海办事处).

Liang will manage mill relations, technical support and distribution at HeiQ Taiwan. She brings close to 20 years of experience in textile and garment production supply chain focusing on sales, material innovation and development, sourcing and production. Liang holds a Bachelor of International Trade from the National Taipei University of Business, Taiwan, speaks Chinese, English and Spanish and has lived in both Taiwan and Argentina. And will be based in the new office in Taipei (瑞士海屹科有限公司).

HeiQ continues to increase its global footprint with the creation of HeiQ Shanghai and HeiQ Taiwan. In addition to HeiQ Hong Kong, these offices aim to provide dedicated technical support in the Greater China area, further broaden its geographical reach in strategic locations and support HeiQ’s brand partners’ manufacturing activities in the region.

22.05.2019

Filidea: Premium range of racing suits for Formula 1 and the World Rally Championship

The last frontier of innovation in racing suits made with yarns in Metamicro is the model Prime SP-16+, designed in collaboration with the Team McLaren Honda F.1

The last frontier of innovation in racing suits made with yarns in Metamicro is the model Prime SP-16+, designed in collaboration with the Team McLaren Honda F.1

The spinning mill Filidea, joint venture between Marchi & Fildi spa and Abalıoğlu Holding A.Ş specialized in technical and high performance yarns with natural and synthtic fibers, is parter of Sparco, italian Company leader for the production of automotive components and technical apparels for the most important world Championships. The cooperation between the two Companies located in Piedmont, northern Italy, is focused on the supply of yarns with Metamicro in an exclusive composition, that are used for the production of the racing suits Sparco of the Premium range for Formula 1 and the World Rally Championship. The fire resistant yarn Metamicro based on aramidic fibers are a product of the latest generation, for their production it is necessary a special spinning line. The production is following the strict Sparco standards. Sparco controls all the production chain of racing suits, from Filidea, who has the competence to dye all the yarns with aramidic fibers in its own dyeing plant, to the woven fabric, produced and dyed in its own plant, to the woven fabric made by the italian Company TAT, till the production of garments. The process is always improved and tested.

Metamicro yarns are made by an high peformance spinning process. They are used for the production of fire resistant fabrics, that make a protection barrier for the body against flames and high temperature. The very fine micronage allows the production of very light fabrics with thick texture, the perfect base for light and comfortable suits. These features assure easier movements to the driver and the maximum protection from fire, keeping high breathability.

Filidea has invested on its production capacity of corespun yarns with XLANCE® technology, fiber used for the production of longlasting workwear apparel with an excellent fitting.

The spinning mill Filidea, joint venture between Marchi & Fildi spa and Abalıoğlu Holding A.Ş specialize in technical and high performance yarns with natural and synthtic fibers, is increasing its production of blends with XLANCE®.

XLANCE® is the innovative elastolefin fibe, elastic, chlorine and UV resistant. It finds application on workwear and outdoor clothing, with natural and comfort fitting. The comfort stretch feature follows the the body’s natural movement during the day-to-day work. Workwear clothing are so light, resistant and with a contemporary look. Resistance to abrasion and to frequent industrial laundry cycles with chemical products meet the needs of several professional sectors. XLANCE® is produced by ©Xlance srl, Company located in Varallo Pombia (province of Novara – Piedmont – Italy) that found in Filidea the perfect partner for the development of specific yarns, that are getting more and more requested. An innovation that is getting more important thanks to the cooperation of the two textile Companies located in Piedmont. Filidea has been producing XLANCE® yarns since 2009 and has now a great know-how. The Company to strengthens its leadership in technical yarns, for the main applications on protetictive garments, workwear, sportswear, racing and automotive. Filidea has developed and consolidated several partnerships for the creation of complete supply chains and the collaboration with ©Xlance is a perfect example.

Source:

Filidea