From the Sector

Reset
1463 results
HeiQ: Anti-odor technology for feather and down products Photo HeiQ
18.04.2024

HeiQ: Anti-odor technology for feather and down products

HeiQ introduces an anti-odor product addition to its HeiQ Fresh range to eliminate persistent malodor on feather and down products. Biobased HeiQ Fresh for Feather & Down utilizes a combination of pre- and probiotics (synbiotics) which helps to break up the smelly components. This innovation will be showcased at the Techtextil 2024 Swiss Pavilion.

HeiQ Fresh for Feather & Down is a 100% biobased technology engineered to combat the persistent malodor often associated with feather jackets, duvets, and pillows. Developed to address a common challenge faced by manufacturers and consumers alike, this solution represents a leap forward in the field of odor management by removing a significant objection to purchase.

The key issue lies in the natural oil secretion of the duck or goose to provide its natural waterproofing. While essential, this oil becomes the source of the unwanted odors that persist despite conventional cleaning methods. HeiQ Fresh for Feather & Down tackles this problem head-on by harnessing the power of synbiotics (pre- and probiotics).

HeiQ introduces an anti-odor product addition to its HeiQ Fresh range to eliminate persistent malodor on feather and down products. Biobased HeiQ Fresh for Feather & Down utilizes a combination of pre- and probiotics (synbiotics) which helps to break up the smelly components. This innovation will be showcased at the Techtextil 2024 Swiss Pavilion.

HeiQ Fresh for Feather & Down is a 100% biobased technology engineered to combat the persistent malodor often associated with feather jackets, duvets, and pillows. Developed to address a common challenge faced by manufacturers and consumers alike, this solution represents a leap forward in the field of odor management by removing a significant objection to purchase.

The key issue lies in the natural oil secretion of the duck or goose to provide its natural waterproofing. While essential, this oil becomes the source of the unwanted odors that persist despite conventional cleaning methods. HeiQ Fresh for Feather & Down tackles this problem head-on by harnessing the power of synbiotics (pre- and probiotics).

Through an advanced process, the technology applied during the production stage effectively removes bacterial nutrients present in the feathers and down, thereby preventing the formation of persistent and unpleasant odors. Extensive testing has demonstrated a significant reduction in malodor even after prolonged use, validating the efficacy of this solution. The human sensory testing method according to ISO 17299-1 is the recommended test method.

More information:
HeiQ odor control down and feathers
Source:

HeiQ

Graniteville Specialty Fabrics installs Baldwin’s TexCoat™ G4 (c) Baldwin Technology Company Inc.
17.04.2024

Graniteville Specialty Fabrics installs Baldwin’s TexCoat™ G4

Graniteville Specialty Fabrics has set new standards by challenging the traditional pad finishing process. With Baldwin Technology’s spray finishing technology, Graniteville Specialty Fabrics has been able to increase production efficiency, and minimize chemical and water waste.
 
Based in Graniteville, South Carolina, Graniteville Specialty Fabrics produces coatings and coated fabrics that are resistant to water, fire, UV and weather for the military, marine and tent markets. The installation of Baldwin’s TexCoat™ G4 is part of a facility upgrade to maximize production efficiency and capacity in the durable water-repellent finishing and coating line to meet growing customer demand for advanced engineered products.

Graniteville Specialty Fabrics has set new standards by challenging the traditional pad finishing process. With Baldwin Technology’s spray finishing technology, Graniteville Specialty Fabrics has been able to increase production efficiency, and minimize chemical and water waste.
 
Based in Graniteville, South Carolina, Graniteville Specialty Fabrics produces coatings and coated fabrics that are resistant to water, fire, UV and weather for the military, marine and tent markets. The installation of Baldwin’s TexCoat™ G4 is part of a facility upgrade to maximize production efficiency and capacity in the durable water-repellent finishing and coating line to meet growing customer demand for advanced engineered products.

With sustainability benefits, tracking and process control, and Industry 4.0 integration, the TexCoat™ G4 provides high-quality fabric finishing, with no chemistry waste, as well as minimal water and energy consumption. This system utilizes non-contact precision-spray technology, ensuring precise finishing coverage with the exact amount of chemistry. Changeovers (pad bath emptying, cleaning and refilling) are reduced, resulting in substantial chemical conservation and increased productivity.

Collaboration between Archroma and DMIx (c) ColorDigital
16.04.2024

Collaboration between Archroma and DMIx

Archroma and ColorDigital GmbH, a company in textile supply chain digitalization, are joining forces to bring the library of engineered color standards to the DMIx ecosystem of fashion brands and suppliers.

All 5,760 color references in the Color Atlas by Archroma® will be integrated into ColorDigital’s DMIx interactive collaboration platform, enabling brands to embrace almost unlimited color creativity with an assurance of color precision. Based on digital twin technology, the DMIx solution ensures that color choices are aligned across design, sourcing and production, reducing sampling costs and collection development time as well as improving color accuracy and end-product quality. DMIx marks a significant step forward in enhancing color management processes for both digital product creation (DPC) and physical production.

Archroma and ColorDigital GmbH, a company in textile supply chain digitalization, are joining forces to bring the library of engineered color standards to the DMIx ecosystem of fashion brands and suppliers.

All 5,760 color references in the Color Atlas by Archroma® will be integrated into ColorDigital’s DMIx interactive collaboration platform, enabling brands to embrace almost unlimited color creativity with an assurance of color precision. Based on digital twin technology, the DMIx solution ensures that color choices are aligned across design, sourcing and production, reducing sampling costs and collection development time as well as improving color accuracy and end-product quality. DMIx marks a significant step forward in enhancing color management processes for both digital product creation (DPC) and physical production.

Sustainability is an essential factor for both Archroma and DMIx. Colors in the Archroma Color Atlas are formulated to comply with leading eco-standards while also delivering consistent and accurate color reproduction. This complements the DMIx ImpAct approach, which provides data on the environmental impact of raw materials to enable brands to select inputs that meet their sustainability targets.

A new feature on the DMIx platform is DMIx eXcite, an inspirational material and color-trend hub that uses interactive moodboards to share new color and material scenarios ahead of each season. Designers and colorists will be able to directly use colors presented in the eXcite trend reports, including colors from the Color Atlas by Archroma®, across the DMIx color and 3D technology tools.

Source:

Archroma

Kornit Digital, White ink on colored fabrics (c) Kornit Digital
12.04.2024

Kornit Digital at Texprocess 2024

Kornit Digital LTD. will display its digital fabric and integrated workflow portfolio at Texprocess 2024, being held April 23-26.

Kornit Digital will feature a view into the end-to-end, fabric manufacturing ecosystem – allowing for production of any fabric and any design for any purpose. The centerpiece is Kornit Presto MAX, transforming the digital world of fabric printing with an ability to print on any fabric type – from cotton and polyester to denim and leather. Built on the promise of sustainability, Presto MAX reduces both water usage and waste. The system is the world’s first offering to print white ink on colored fabrics alongside neon to extend the color gamut by as much as 30 percent. Kornit’s new Vivido inks additionally offers dark black pigments.

Kornit Digital LTD. will display its digital fabric and integrated workflow portfolio at Texprocess 2024, being held April 23-26.

Kornit Digital will feature a view into the end-to-end, fabric manufacturing ecosystem – allowing for production of any fabric and any design for any purpose. The centerpiece is Kornit Presto MAX, transforming the digital world of fabric printing with an ability to print on any fabric type – from cotton and polyester to denim and leather. Built on the promise of sustainability, Presto MAX reduces both water usage and waste. The system is the world’s first offering to print white ink on colored fabrics alongside neon to extend the color gamut by as much as 30 percent. Kornit’s new Vivido inks additionally offers dark black pigments.

Additionally featured is the KornitX Global Fulfillment Network, a solution designed to optimize operational efficiency, eliminate supply chain bottlenecks, and ensure products are readily available to meet customer demands. The solution connects brands, retailers, and digital platforms to a high-quality production network – providing rapid replenishment and trend adaptability for direct-to-fabric production. Pixel-to-parcel monitoring and control fully integrates the end-to-end production workflow for a seamless experience. The solution based on Kornit’s MAX technology enables brands to maximize margins, boost profitability, and pave the way for a sustainable future in the digital on-demand fashion and textile industry.

Beyond technology demonstrations, Kornit will additionally highlight how MAX technology serves as a vibrant partner platform to drive possibilities across the entire fabric printing and processing chain. Key partners highlighted include:

  • Colortex: Providing fashionable, custom textiles for the footwear industry.
  • ZwissTex: Offering quality, sustainable textile solutions for the automotive and clothing sectors.
  • Print Logistic: Delivering a full range of services - from printing to worldwide drop-shipping for smooth e-commerce integration.
  • CGS: Driving global performance through business applications, enterprise learning and outsourcing services.
  • FastSwen: Leveraging Moving Cavity Technology (MCT) to transform textile handling and production efficiency.
  • Premier Digital Textiles: Serving as the prime supplier of textiles with extensive warehousing across the US and UK.
  • Greentex: Providing highly sustainable, innovative, and customizable fabrics for advanced textile printing.

 

Source:

Kornit Digital

Bernd Reifenhäuser, Ulrich Reifenhäuser, Jan Karnath Foto: Reifenhäuser
Bernd Reifenhäuser, Ulrich Reifenhäuser, Jan Karnath
11.04.2024

Fourth generation at Reifenhäuser

Jan Karnath (39), a nephew of Bernd Reifenhäuser (CEO) and Ulrich Reifenhäuser (CSO), is the first representative of the fourth generation to join the operational business of the Reifenhäuser Group. His start paves the way for the continuous development of the family business and reinforces the transformation from machine manufacturer to solution provider: As the company's first Chief Digital Officer, Karnath will henceforth be responsible for and steer the Group's digital transformation.

In his new position as Chief Digital Officer, Jan Karnath is responsible for the strategic and operational development of all Reifenhäuser units whose business model is based on digital products: The tech start-up RE: GmbH, which specializes in connecting entire production facilities, AR:DEL, Reifenhäuser's digital education and learning platform, and R-Cycle, the digital product passport for sustainable packaging. In addition, Karnath is responsible for the Group's overall digital strategy: he will continue to develop the portfolio of digital products and ensure that all relevant digital initiatives are integrated into strategic planning.

Jan Karnath (39), a nephew of Bernd Reifenhäuser (CEO) and Ulrich Reifenhäuser (CSO), is the first representative of the fourth generation to join the operational business of the Reifenhäuser Group. His start paves the way for the continuous development of the family business and reinforces the transformation from machine manufacturer to solution provider: As the company's first Chief Digital Officer, Karnath will henceforth be responsible for and steer the Group's digital transformation.

In his new position as Chief Digital Officer, Jan Karnath is responsible for the strategic and operational development of all Reifenhäuser units whose business model is based on digital products: The tech start-up RE: GmbH, which specializes in connecting entire production facilities, AR:DEL, Reifenhäuser's digital education and learning platform, and R-Cycle, the digital product passport for sustainable packaging. In addition, Karnath is responsible for the Group's overall digital strategy: he will continue to develop the portfolio of digital products and ensure that all relevant digital initiatives are integrated into strategic planning.

Jan Karnath has over 15 years of experience in the digital business. He studied Management in Vienna and Digital Transformation & Innovation at Stanford University. He then began his career at SAP and has since successfully led several digital companies as a board member and founder. Investors in these companies have included EQT and Porsche AG.

More information:
Reifenhäuser
Source:

Reifenhäuser

Photo: Manzi Gandhi, unsplash
11.04.2024

Active Apparel Group: OEKO-TEX 100 Certified Water-Based Inks for Apparel Printing

As part of a broader initiative to reduce environmental impacts and keep ahead of evolving global chemical regulations, Active Apparel Group (AAG), manufacturer of performance apparel for the leisure/lifestyle and active market, is embracing water-based OEKO-TEX 100 Class 1 Standard Printing Inks in their manufacturing process.

Common and inexpensive inks used in the global manufacture of apparel contain a wide range of toxic chemicals, including phthalates, petroleum-based co-solvents, PVC, and other volatile organic compounds. AAG’s initiative to use OEKO-TEX approved, water-based inks creates benefits for factory workers, people living local to these factories, consumers, and everyone downstream.

AAG offers a range of printing methods to address a variety of customer needs, including:  digital printing, screen printing, and heat transfers for on-garment logos and care instructions. OEKO-TEX certified water-based inks are used for all of its digital printing and for the majority of its screen printing. These non-toxic water-based inks offer a socially and environmentally better alternative to the more commonly used Plastisol inks.

As part of a broader initiative to reduce environmental impacts and keep ahead of evolving global chemical regulations, Active Apparel Group (AAG), manufacturer of performance apparel for the leisure/lifestyle and active market, is embracing water-based OEKO-TEX 100 Class 1 Standard Printing Inks in their manufacturing process.

Common and inexpensive inks used in the global manufacture of apparel contain a wide range of toxic chemicals, including phthalates, petroleum-based co-solvents, PVC, and other volatile organic compounds. AAG’s initiative to use OEKO-TEX approved, water-based inks creates benefits for factory workers, people living local to these factories, consumers, and everyone downstream.

AAG offers a range of printing methods to address a variety of customer needs, including:  digital printing, screen printing, and heat transfers for on-garment logos and care instructions. OEKO-TEX certified water-based inks are used for all of its digital printing and for the majority of its screen printing. These non-toxic water-based inks offer a socially and environmentally better alternative to the more commonly used Plastisol inks.

Making a sizable environmental impact, the printing service of AAG’s business is significant. Digital printing averages 25,000 meters per month with screen printing averaging 60,000 garments per month.

The use of water-based inks requires a skilled production team and training of employees is ongoing. AAG currently employs 30 people at its printing operations in Ningbo, China.

Source:

Active Apparel Group

INDA Lifetime Award 2024 INDA
09.04.2024

INDA Honors Three Nonwoven Industry Professionals with Lifetime Awards

INDA, the Association of the Nonwoven Fabrics Industry, announced three recipients for the INDA Lifetime Service Award and Lifetime Technical Achievement Awards. David Powling, Paul Latten, and Arnold Wilkie are being recognized for their key contributions to the advancement of the nonwovens industry and INDA.

David Powling and Paul Latten will receive their awards at the World of Wipes® (WOW) International Conference, June 18th beginning at 4:30 pm
Arnold Wilkie will receive his award at the RISE® Conference, October 1st at 4:30 pm.

The Award recipients are:

INDA, the Association of the Nonwoven Fabrics Industry, announced three recipients for the INDA Lifetime Service Award and Lifetime Technical Achievement Awards. David Powling, Paul Latten, and Arnold Wilkie are being recognized for their key contributions to the advancement of the nonwovens industry and INDA.

David Powling and Paul Latten will receive their awards at the World of Wipes® (WOW) International Conference, June 18th beginning at 4:30 pm
Arnold Wilkie will receive his award at the RISE® Conference, October 1st at 4:30 pm.

The Award recipients are:

David Powling
David Powling has worked for Kimberly-Clark Corporation for nearly 25 years and has been a contributor to the Wipes Task Force and Technical Committees at INDA and EDANA for over 15 years. Powling served as Chairman of the INDA Wipes Task Force from 2009-2013. His work on these committees include developing the first and second edition of the Flushability Guidance Document (GD) and he was later instrumental in the roll out of the third and fourth edition GDs. Throughout this time, Powling coordinated activities with Kimberly-Clark Corporation to provide critical supporting data, as these flushability test protocols were developed.

Powling has been actively involved in collection studies where he was key in framing the work packages of those studies, collating and analyzing the data, and drafting reports. These collection studies include: Moraga, CA (advisor); Maine – Part #1 and Part #2 (hands-on); Jacksonville (hands-on); and the Northern and Southern California studies in 2023, which combined, was the largest study to date. Powling led the charge in the California study and was personally involved in identifying 1,745 samples.

Powling has been a key technical contributor to the INDA Government Relation efforts that has resulted in labelling regulations in multiple U.S. states. He has also been an active participant in efforts to develop an ISO standard for flushable products.  In this effort, he was a test method sub-team leader during the preparation of the proposed ISO standard responsible for organizing appendices of existing flushability methodologies. Additionally, Powling has been awarded, or has pending, 25+ U.S. patents, including many covering the development of dispersible wet wipes.

Paul Latten
Paul Latten has been an active member of the nonwoven and fiber industries for over 35 years. Most recently he has led innovation at Southeast Nonwovens, commercializing more than 75 new nonwoven products per year. Prior to joining Southeast Nonwovens, Latten held senior leadership positions with Basofil, Consolidated Fibers, Invista, and KoSa (and Trevira and Hoechst Celanese precursors to KoSa.)

Latten has a successful career of reinvigorating company R&D efforts by instilling a focus on customer-centric innovation. He is an inventor of record for a number of patents and pending applications. Latten has given numerous presentations on innovative nonwoven materials, at events such as INDA’s World of Wipes® (WOW) International Conference, RISE® (Research, Innovation & Science for Engineered Fabrics), the VISION International Conference, and the Converting and Bonding (CAB) Conference.

His recent innovations have been diverse in scope and include nonwovens for use in hydrogen fuel cells, moisture detection media, proprietary wipe designs, and natural fiber-based packaging. Aside from new fiber and nonwoven products, Latten has championed process innovation that has resulted in tangible output gains that broadened the market opportunity for his current and prior companies.

Latten’s portfolio of innovations has spanned across the nonwoven markets, often involving wetlaid and drylaid nonwovens. These include materials for moisture detection, synthetic papers, fuel cell cathodes, protective covers for treats, melamine nonwovens for surface treatment, and the development of binder fibers. His work also touched upon disposable hygiene applications entailing dry-laid web containing hollow synthetic fibers to improve absorbent core fluid uptake.

Latten has been a board member of INDA for multiple terms and served as Chairman in 2008-2010. Additionally, he has contributed to many INDA conference planning committees, helping drive the success of these events.

Arnold Wilkie
Arnold Wilkie has a distinguished career in advancing yarn, fiber, and nonwoven technologies since 1970. Since 1988, he has been President and Owner of Hills, Inc. where he has sustained their innovative culture. Wilkie has over 40 patents and applications covering yarns, bicomponent fibers, ultra-fine fibers, nanofibers, dissolvable filaments, meltblown nonwovens, and polymer processing innovations. He established Hills as a leading innovator in bicomponent fiber nonwovens and in the equipment to produce these materials. During Wilkie’s time leading Hills, their pilot capabilities have become well-known and highly regarded for enabling material innovations.

Many of his patents pertain to the development of equipment solutions that enable the production of complex bi- and multi-component fiber structures. These solutions include the method of forming a continuous filament spun-laid web, the method and apparatus for producing polymer fibers and fabrics including multiple polymer components, the method and apparatus for controlling airflow in a fiber extrusion system, and controlling the dissolution of dissolvable polymer components in plural component fibers.

Arnold Wilkie, President, Hills, Inc., earned his bachelor’s degree in Mechanical Engineering from the University of Tennessee and an MBA from the University of West Florida. He is a licensed Professional Engineer in Florida, and has been engaged in the synthetic fibers industry since 1970. The first 17 years were with the Monsanto Company, where he held positions in Fiber Process Engineering, Fiber Product R&D, and Product Management. Since 1988, he has been a majority Owner and President of Hills, Inc., a 52-year-old company located in West Melbourne, Florida, specializing in the development, manufacture, and supply of advanced custom fiber extrusion equipment. Wilkie has been involved with and supported The Nonwovens Institute, since its founding in 1991 as the Nonwovens Cooperative Research Center (NCRC), with Hills joining as a Member in 2001

More information:
INDA lifetime achievement
Source:

INDA

08.04.2024

Indorama Ventures: Evaluation of PTA and PET plants in Rotterdam

Indorama Ventures' Combined PET business segment will enter into a consultation process with representatives of site employees to evaluate the possible future for production activities at its PTA (Purified Terephthalic Acid) and PET (Polyethylene terephthalate) plants, located at its integrated production site in Rotterdam, Netherlands.

The evaluation follows a comprehensive review aimed at bolstering the site's competitiveness. However, it occurs amidst notable competitive and macroeconomic challenges, including increasing labor, raw material, and energy costs, alongside the influence of low-cost imports. Structural shifts in the industry are contributing to a growing divergence in raw material expenses between China and Europe, with limited anticipated recovery. Consequently, there is a need to optimize the company's asset portfolio to enhance its position and ensure resilience in response to evolving market dynamics.

Customers will not be affected as Indorama Venture’s extensive global footprint will enable seamless operations leveraging alternative assets.

Indorama Ventures' Combined PET business segment will enter into a consultation process with representatives of site employees to evaluate the possible future for production activities at its PTA (Purified Terephthalic Acid) and PET (Polyethylene terephthalate) plants, located at its integrated production site in Rotterdam, Netherlands.

The evaluation follows a comprehensive review aimed at bolstering the site's competitiveness. However, it occurs amidst notable competitive and macroeconomic challenges, including increasing labor, raw material, and energy costs, alongside the influence of low-cost imports. Structural shifts in the industry are contributing to a growing divergence in raw material expenses between China and Europe, with limited anticipated recovery. Consequently, there is a need to optimize the company's asset portfolio to enhance its position and ensure resilience in response to evolving market dynamics.

Customers will not be affected as Indorama Venture’s extensive global footprint will enable seamless operations leveraging alternative assets.

The company will focus on mitigating negative impact and providing care and support for any affected people.

This update follows the company’s announcement of 'IVL 2.0' earlier in 2024, signaling a new strategic chapter focused on optimizing financial structures, fostering organic growth, and delivering enhanced value to customers through sustainable solutions. The strategic pillars of action involve optimizing asset utilization, driving operational excellence, unlocking portfolio value, and maintaining leadership in core markets.

Source:

Indorama Ventures Public Company Limited

Freudenberg: Sant’Omero site implements ZDHC (c) Freudenberg Performance Materials
08.04.2024

Freudenberg: Sant’Omero site implements ZDHC

Freudenberg Performance Materials Apparel Europe (Freudenberg) has reached a further sustainability milestone: The new Freudenberg Apparel Competence Center in Sant’Omero, Italy, successfully completed the 4sustainability® Chemical Management protocol (4s CHEM) recently and reached the Advanced Level. The aim of the protocol is to progressively eliminate toxic and hazardous chemicals and related risks throughout the production process.

Freudenberg Performance Materials Apparel Europe (Freudenberg) has reached a further sustainability milestone: The new Freudenberg Apparel Competence Center in Sant’Omero, Italy, successfully completed the 4sustainability® Chemical Management protocol (4s CHEM) recently and reached the Advanced Level. The aim of the protocol is to progressively eliminate toxic and hazardous chemicals and related risks throughout the production process.

Competence center for interlinings
Freudenberg opened its Apparel Competence Center in Sant’Omero in May 2023. The factory in Italy is an innovative competence center that coats and finishes nonwoven, woven and weft interlinings for apparel customers in Europe.
Freudenberg has now taken the next logical step: as part of a comprehensive audit, the Apparel Competence Center has implemented ZDHC guidelines in its production process. To achieve this, Freudenberg called in the experts from Process Factory, a consultancy that specializes in sustainability topics. With their support, Freudenberg’s Sant’Omero site has reached the Advanced level of the 4sustainability® Chemical Management protocol (4s CHEM), in line with the ZDHC Roadmap to Zero Program.
Implementation is controlled annually based on this protocol and offers companies in the fashion industry a degree of reliability. It guarantees structured, fully transparent procedures, regular monitoring, and continuous control of Freudenberg’s production processes.  

ZDHC
By demonstrating its rejection of environmentally harmful chemicals and substances, the Apparel Competence Center shows that Freudenberg gives top priority to taking responsibility for people and the environment.
The aim of the Zero Discharge of Hazardous Chemicals (ZDHC) Foundation and its globally recognized Roadmap to Zero Program is to eliminate the release of toxic chemicals in the textile and fashion industry’s supply chain based on the ZDHC Manufacturing Restricted Substances List (ZDHC MRSL).
By applying the 4s CHEM protocol, the production site in Sant’Omero is sending a clear signal to the fashion industry that Freudenberg products meet the highest quality standards and are also safe and environmentally friendly.

Source:

Freudenberg Performance Materials Holding GmbH

(c) A. Monforts Textilmaschinen GmbH & Co. KG
08.04.2024

Monforts: Launch of coaTTex at Techtextil 2024

At the upcoming Techtextil show for technical textiles, which will take place in Frankfurt from April 23-25, Monforts will launch its new coaTTex coating unit dedicated to air knife and knife-over-roller coating.

For single-sided application with paste or foam, the versatile coaTTex is suitable for both incorporation into existing finishing ranges as well as installation with new Monforts lines, notably the Montex stenter systems.

A wide range of coatings can be applied to fabrics for providing functions such as waterproofing, liquid and gas protection and breathability, in addition to foam lamination and coating, including black-out coating.

The considerable technical textile end-use applications envisaged for the coaTTex range from window blinds to abrasive cloths and from airbags to sails.

With an operational speed of up to 40 metres per minute, coaTTex units are available in nominal widths of between 1800mm to 3600mm and their robust construction is characterised by a rotating beam for the fixation of up to three different knife executions.

At the upcoming Techtextil show for technical textiles, which will take place in Frankfurt from April 23-25, Monforts will launch its new coaTTex coating unit dedicated to air knife and knife-over-roller coating.

For single-sided application with paste or foam, the versatile coaTTex is suitable for both incorporation into existing finishing ranges as well as installation with new Monforts lines, notably the Montex stenter systems.

A wide range of coatings can be applied to fabrics for providing functions such as waterproofing, liquid and gas protection and breathability, in addition to foam lamination and coating, including black-out coating.

The considerable technical textile end-use applications envisaged for the coaTTex range from window blinds to abrasive cloths and from airbags to sails.

With an operational speed of up to 40 metres per minute, coaTTex units are available in nominal widths of between 1800mm to 3600mm and their robust construction is characterised by a rotating beam for the fixation of up to three different knife executions.

Central adjustment of both the horizontal and vertical position of the beam, and also of the knife angle, enables easy adaptation to new projects and automatic tension control guarantees high quality production. In addition, the cleaning blade for the coating roller is pneumatically controlled, as is the lifting of the beam at seams and clamping during fabric standstill.

Source:

A. Monforts Textilmaschinen GmbH & Co. KG

Archroma, G-Star RAW and Advance Denim promote cleaner denim production Photo: Advance Denim
03.04.2024

Archroma, G-Star RAW and Advance Denim promote cleaner denim production

With the aim to help the denim industry reduce the environmental impact of its wastewater and move towards circularity, Archroma, G-Star RAW and Advance Denim have renewed their joint commitment to the production of aniline-free denim apparel based on Archroma’s DENISOL® PURE INDIGO 30.

Their joint aim is to produce high-quality denim in authentic blue shades without the aniline impurity carried through from the synthesis of standard synthetic indigo. In traditional denim production, this aniline remains bound with the indigo pigment on the fabric; the remaining aniline is discharged during the dyeing and washing process. This can be a problem because aniline is toxic to aquatic life and two-thirds of aniline waste currently ends up in wastewater discharge where it could potentially pollute waterways and the ocean.

Archroma developed DENISOL® PURE INDIGO 30 to answer this key challenge. A 30% pre-reduced indigo solution, DENISOL® PURE INDIGO 30 makes it possible to produce indigo-dyed denim without aniline impurities throughout the process.

With the aim to help the denim industry reduce the environmental impact of its wastewater and move towards circularity, Archroma, G-Star RAW and Advance Denim have renewed their joint commitment to the production of aniline-free denim apparel based on Archroma’s DENISOL® PURE INDIGO 30.

Their joint aim is to produce high-quality denim in authentic blue shades without the aniline impurity carried through from the synthesis of standard synthetic indigo. In traditional denim production, this aniline remains bound with the indigo pigment on the fabric; the remaining aniline is discharged during the dyeing and washing process. This can be a problem because aniline is toxic to aquatic life and two-thirds of aniline waste currently ends up in wastewater discharge where it could potentially pollute waterways and the ocean.

Archroma developed DENISOL® PURE INDIGO 30 to answer this key challenge. A 30% pre-reduced indigo solution, DENISOL® PURE INDIGO 30 makes it possible to produce indigo-dyed denim without aniline impurities throughout the process.

Easy to use with automated dosing, DENISOL® PURE INDIGO 30 reduces the water needed for preparation, washing and wastewater treatment compared to indigo grains. It also reduces hazardous chemical consumption while allowing high reproducibility and creating the authentic and iconic deep indigo shades traditionally associated with denim.

G-Star RAW is working towards making 20% of its entire collection from Cradle to Cradle Certified® fabrics by 2025. Its partnership with Archroma and Advance Denim contributes to this goal, since the aniline-free DENISOL® holds a Gold Level Material Health Certificate from the Cradle to Cradle Products Innovation Institute. DENISOL® PURE INDIGO 30 is also compliant with other eco-standards and the requirements of leading retailers and brands.

Advance Denim, G-Star RAW and Archroma have previously collaborated to launch collections based on Archroma’s EarthColors® technology, which upcycles plant waste from the herbal industry to create sustainable colorways.

Source:

Archroma

Winner of Cellulose Fibre Innovation Award 2024 (c) nova-Institute
Winner of Cellulose Fibre Innovation Award 2024
27.03.2024

Winner of Cellulose Fibre Innovation Award 2024

The “Cellulose Fibres Conference 2024” held in Cologne on 13-14 March demonstrated the innovative power of the cellulose fibre industry. Several projects and scale-ups for textiles, hygiene products, construction and packaging showed the growth and bright future of this industry, supported by the policy framework to reduce single-use plastic products, such as the Single Use Plastics Directive (SUPD) in Europe.

The “Cellulose Fibres Conference 2024” held in Cologne on 13-14 March demonstrated the innovative power of the cellulose fibre industry. Several projects and scale-ups for textiles, hygiene products, construction and packaging showed the growth and bright future of this industry, supported by the policy framework to reduce single-use plastic products, such as the Single Use Plastics Directive (SUPD) in Europe.

40 international speakers presented the latest market trends in their industry and illustrated the innovation potential of cellulose fibres. Leading experts introduced new technologies for the recycling of cellulose-rich raw materials and gave insights into circular economy practices in the fields of textiles, hygiene, construction and packaging. All presentations were followed by exciting panel discussions with active audience participation including numerous questions and comments from the audience in Cologne and online. Once again, the Cellulose Fibres Conference proved to be an excellent networking opportunity to the 214 participants and 23 exhibitors from 27 countries. The annual conference is a unique meeting point for the global cellulose fibre industry.  

For the fourth time, nova-Institute has awarded the “Cellulose Fibre Innovation of the Year” Award at the Cellulose Fibres Conference. The Innovation Award recognises applications and innovations that will lead the way in the industry’s transition to sustainable fibres. Close race between the nominees – “The Straw Flexi-Dress” by DITF & VRETENA (Germany), cellulose textile fibre from unbleached straw pulp, is the winning cellulose fibre innovation 2024, followed by HONEXT (Spain) with the “HONEXT® Board FR-B (B-s1, d0)” from fibre waste from the paper industry, while TreeToTextile (Sweden) with their “New Generation of Bio-based and Resource-efficient Fibre” won third place.

Prior to the event, the conference advisory board had nominated six remarkable innovations for the award. The nominees were neck and neck, when the winners were elected in a live vote by the audience on the first day of the conference.

First place
DITF & VRETENA (Germany): The Straw Flexi-Dress – Design Meets Sustainability

The Flexi-Dress design was inspired by the natural golden colour and silky touch of HighPerCell® (HPC) filaments based on unbleached straw pulp. These cellulose filaments are produced using environmentally friendly spinning technology in a closed-loop production process. The design decisions focused on the emotional connection and attachment to the HPC material to create a local and circular fashion product. The Flexi-Dress is designed as a versatile knitted garment – from work to street – that can be worn as a dress, but can also be split into two pieces – used separately as a top and a straight skirt. The top can also be worn with the V-neck front or back. The HPC textile knit structure was considered important for comfort and emotional properties.

Second place
Honext Material (Spain): HONEXT® Board FR-B (B-s1, d0) – Flame-retardant Board made From Upcycled Fibre Waste From the Paper Industry

HONEXT® FR-B board (B-s1, d0) is a flame-retardant board made from 100 % upcycled industrial waste fibres from the paper industry. Thanks to innovations in biotechnology, paper sludge is upcycled – the previously “worthless” residue from paper making – to create a fully recyclable material, all without the use of resins. This lightweight and easy-to-handle board boasts high mechanical performance and stability, along with low thermal conductivity, making it perfect for various applications in all interior environments where fire safety is a priority. The material is non-toxic, with no added VOCs, ensuring safety for both people and the planet. A sustainable and healthy material for the built environment, it achieves Cradle-to-Cradle Certified GOLD, and Material Health CertificateTM Gold Level version 4.0 with a carbon-negative footprint. Additionally, the product is verified in the Product Environmental Footprint.

Third Place
TreeToTextile (Sweden): A New Generation of Bio-based and Resource-efficient Fibre

TreeToTextile has developed a unique, sustainable and resource efficient fibre that doesn’t exist on the market today. It has a natural dry feel similar to cotton and a semi-dull sheen and high drape like viscose. It is based on cellulose and has the potential to complement or replace cotton, viscose and polyester as a single fibre or in blends, depending on the application.
TreeToTextile Technology™ has a low demand for chemicals, energy and water. According to a third party verified LCA, the TreeToTextile fibre has a climate impact of 0.6 kg CO2 eq/kilo fibre. The fibre is made from bio-based and traceable resources and is biodegradable.

The next conference will be held on 12-13 March 2025.

Source:

nova-Institut für politische und ökologische Innovation GmbH

27.03.2024

KARL MAYER GROUP at SaigonTex 2024

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

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

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

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

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

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

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

Source:

KARL MAYER GROUP

(c) TMAS
25.03.2024

TMAS: Microfactory for filter bags in Sweden

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

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

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

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

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

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

Source:

Textile Machinery Association of Sweden

25.03.2024

Texhibition Istanbul: Fifth edition successfully concluded

The fifth edition of the Texhibition Istanbul Fabric and Textile Accessories Fair from 6 to 8 March 2024, organised by İTKİB Fuarcılık A.Ş. in cooperation with the Istanbul Textile Exporters Association (İTHİB), presented 557 exhibitors showcasing the entire range of the textile supplying section: from woven and knitted fabrics to accessories and artificial leather. A new addition was a separate hall for yarns and denim, the BlueBlackDenim hall. With this trade fair, Texhibition has more than doubled its floor space compared to the last event to 35,000 square metres.

Exhibitors
Texhibition Istanbul acts as a central point of contact for the entire international industry, with a clear focus on quality, innovation and the latest trends like the denim companies Bossa, Çalık, İsko, İskur and Kipaş at the BlueBlackDenim Hall.

Yarn companies such as Aksa, Diktaş, Ensar, Karafiber, Kaplanlar, Korteks, Migiteks, Sasa, Tepar showed the production power of the yarn sector, where the product quality, design and workmanship came together.

The fifth edition of the Texhibition Istanbul Fabric and Textile Accessories Fair from 6 to 8 March 2024, organised by İTKİB Fuarcılık A.Ş. in cooperation with the Istanbul Textile Exporters Association (İTHİB), presented 557 exhibitors showcasing the entire range of the textile supplying section: from woven and knitted fabrics to accessories and artificial leather. A new addition was a separate hall for yarns and denim, the BlueBlackDenim hall. With this trade fair, Texhibition has more than doubled its floor space compared to the last event to 35,000 square metres.

Exhibitors
Texhibition Istanbul acts as a central point of contact for the entire international industry, with a clear focus on quality, innovation and the latest trends like the denim companies Bossa, Çalık, İsko, İskur and Kipaş at the BlueBlackDenim Hall.

Yarn companies such as Aksa, Diktaş, Ensar, Karafiber, Kaplanlar, Korteks, Migiteks, Sasa, Tepar showed the production power of the yarn sector, where the product quality, design and workmanship came together.

In addition to well-known companies such as Almodo, Bahariye, BTD, Can Textile, Iskur, Kipaş, Menderes, Söktaş, Yünsa, Zorlu, İpeker a large number of other export-oriented companies from the segments of textiles (woven fabrics, knitting) presented their latest designs and products.

Visitors
25,752 visitors came from over 112 countries, 41.8% from the European Union (including Germany, Italy, the Netherlands, Spain, Romania etc.) and Great Britain, Ukraine,26.5% from Asia (including Russia etc.), 14.8% from the Middle East (including Jordan, United Arab Emirates, Saudi Arabia) 10.7% from North Africa (including Algeria, Tunisia etc.), 3.1% from North America (United States, Canada), 3.1% from South America and other countries.

American buyers from the USA and Canada in particular, but also a large number of Mexican and Colombian buyers took advantage of the numerous match-making opportunities at Texhibition. Many B2B meetings took place and led to numerous orders being placed, including from key accounts such as Alexander Wang, Asos, Forever 21, Sainsbury's, Veronica Beard etc.

More information:
Texhibition Istanbul Yarns Denim
Source:

JANDALI

22.03.2024

SGL Carbon achieves annual targets for 2023

  • Three out of four business units with record sales and results
  • Carbon Fibers business weighs on the Group's profitability
  • Group sales of €1,089.1 million (-4.1%) and adjusted EBITDA of €168.4 million (-2.5%) in a difficult market environment
  • Sales and earnings forecast for 2023 achieved despite drop in demand from key market
  • 2024 further capacity expansion in graphite components for silicon carbide-based semiconductors

In fiscal year 2023, SGL Carbon achieved the sales and earnings targets set at the beginning of the year despite the drop in demand from the important wind market and an increasingly challenging economic environment. Group sales decreased slightly by €46.8 million (minus 4.1%) to €1,089.1 million (previous year: €1,135.9 million). At € 168.4 million, adjusted EBITDA, a key performance indicator for the Group, was also down slightly (minus 2.5%) compared to the previous year (€172.8 million) but was clearly within the forecast range for 2023 of €160 to 180 million.

  • Three out of four business units with record sales and results
  • Carbon Fibers business weighs on the Group's profitability
  • Group sales of €1,089.1 million (-4.1%) and adjusted EBITDA of €168.4 million (-2.5%) in a difficult market environment
  • Sales and earnings forecast for 2023 achieved despite drop in demand from key market
  • 2024 further capacity expansion in graphite components for silicon carbide-based semiconductors

In fiscal year 2023, SGL Carbon achieved the sales and earnings targets set at the beginning of the year despite the drop in demand from the important wind market and an increasingly challenging economic environment. Group sales decreased slightly by €46.8 million (minus 4.1%) to €1,089.1 million (previous year: €1,135.9 million). At € 168.4 million, adjusted EBITDA, a key performance indicator for the Group, was also down slightly (minus 2.5%) compared to the previous year (€172.8 million) but was clearly within the forecast range for 2023 of €160 to 180 million.

While the positive sales development of the Graphite Solutions (+€53.5 million to €565.7 million), Process Technology (+€21.6 million to €127.9 million) and Composite Solutions (+€0.8 million to €153.9 million) business units had a positive effect, the Carbon Fibers business unit had a negative impact on Group sales with a sales decline of €122.3 million to €224.9 million.

Outlook
The global economy will continue to face comparatively high interest rates and subdued growth prospects in 2024. Tighter financing conditions, weak trade growth and a decline in business and consumer confidence are also weighing on the economic outlook. In addition, heightened geopolitical tensions are contributing to increased uncertainty.

SGL Carbon expects different developments in our key sales markets in 2024. The most important sales and earnings driver will be demand for specialty graphite components for the semiconductor industry. In contrast, all indicators currently suggest that demand for carbon fibers for the wind industry will remain weak in 2024 and that the Carbon Fibers (CF) business unit will therefore continue to record operating losses. Even if demand picks up, SGL Carbon assumes that Carbon Fibers will require additional resources to make the most of market opportunities. With this in mind, teh company announced on February 23, 2024, that they are reviewing all strategic options for Carbon Fibers. These also include a possible partial or complete sale of the business unit.

SGL Carbon's sales forecast for the financial year 2024 takes all four operating business units into account, as the company is only at the beginning of evaluating the strategic options for CF. In line with the assumptions outlined, SGL Carbon is therefore expecting Group sales at the previous year's level (2023: €1,089.1 million).

In the earnings forecast, SGL Carbon has taken into account underutilization of production capacity in the Carbon Fibers business unit and the associated high idle capacity costs. The projected operating loss of CF will have a negative impact on the adjusted EBITDA of the SGL Carbon Group in 2024. Due to the expected positive development of Graphite Solutions, SGL Carbon anticipates an adjusted EBITDA of between €160 million and €170 million for fiscal year 2024, taking into account all four operating business units. Should the process of reviewing all strategic options for the CF business unit result in a sale, the forecast of adjusted EBITDA in 2024 would be between €180 - 190 million.

More information:
SGL Carbon financial year 2023
Source:

SGL Carbon SE

HEREWEAR is winner of the Cellulose Fibre Innovation of the Year Photo: DITF
The Flexidress in its various forms
22.03.2024

HEREWEAR is winner of the Cellulose Fibre Innovation of the Year

At the "International Conference on Cellulose Fibers 2024" in Cologne, Germany, the Nova Institute for Ecology and Innovation awarded first place in the Innovation Prize to the project partners of the EU-funded HEREWEAR project. They presented a dress made of cellulose fibers, which is entirely made of straw pulp.

HEREWEAR is an EU-wide research project that brings together partners from research and industry. They are working to establish a European circular economy for locally produced textiles and clothing made from bio-based raw materials.
The HEREWEAR consortium consists of small and medium-sized enterprises and research institutions. HEREWEAR covers all the necessary expertise and infrastructure from academic and applied research and industry from nine EU countries.

The HEREWEAR approach includes technical and ecological innovations in the production of fibers, yarns, fabrics, knitwear and garments, as well as the use of regional value chains and the circular development of fashion items.

At the "International Conference on Cellulose Fibers 2024" in Cologne, Germany, the Nova Institute for Ecology and Innovation awarded first place in the Innovation Prize to the project partners of the EU-funded HEREWEAR project. They presented a dress made of cellulose fibers, which is entirely made of straw pulp.

HEREWEAR is an EU-wide research project that brings together partners from research and industry. They are working to establish a European circular economy for locally produced textiles and clothing made from bio-based raw materials.
The HEREWEAR consortium consists of small and medium-sized enterprises and research institutions. HEREWEAR covers all the necessary expertise and infrastructure from academic and applied research and industry from nine EU countries.

The HEREWEAR approach includes technical and ecological innovations in the production of fibers, yarns, fabrics, knitwear and garments, as well as the use of regional value chains and the circular development of fashion items.

New technologies for wet and melt spinning of cellulose and bio-based polyesters, e.g. PLA, from which yarns and fabrics are produced, form the technical basis. Coating and dyeing processes have been developed and tested as part of the project. In addition to reducing the carbon footprint of the product, another environmental goal is to reduce the release of microfibers throughout the textile manufacturing process and life cycle.

Improving the sustainability and recyclability of the developed garments is ensured by design for circularity and digitally networked production means. On-demand production is realized in so-called "microfactories", which are individualized and produce only for actual demand. This production method can be achieved through regional, networked value chains and enables the traceability of materials and manufacturing processes.

The dress presented at the award ceremony is an example of the cooperation and the different qualifications of the project partners: TNO (Netherlands Organization for Applied Scientific Research) provided sustainably produced pulp. The HighPerCell fibers were produced in DITF's spinning facilities. At the same time, designers from the fashion label Vretena created the design for the flexible, two-piece dress, which can be knitted without cutting waste. DITF textile experts worked with the designers to develop the knitting pattern. DITF textile engineers and technicians produced the knitted fabric and assembled the dress at the institutes’ technical center. DITF computer scientists and engineers created the "value chain" and "digital twins" for digital traceability of the production processes.

The innovation prize was awarded to the HEREWEAR consortiu for their joint achievement. Representatives of DITF Denkendorf and Vretena accepted the award on behalf of the EU project partners.

Source:

Deutsche Institute für Textil- und Faserforschung (DITF)

DITF: CO2-negative construction with new composite material Photo: DITF
Structure of the wall element
20.03.2024

DITF: CO2-negative construction with new composite material

The DITF is leading the joint project "DACCUS-Pre*". The basic idea of the project is to develop a new building material that stores carbon in the long term and removes more CO2 from the atmosphere than is emitted during its production.       

In collaboration with the company TechnoCarbon Technologies, the project is now well advanced - a first demonstrator in the form of a house wall element has been realized. It consists of three materials: Natural stone, carbon fibers and biochar. Each component contributes in a different way to the negative CO2 balance of the material:

Two slabs of natural stone form the exposed walls of the wall element. The mechanical processing of the material, i.e. sawing in stone cutting machines, produces significant quantities of stone dust. This is very reactive due to its large specific surface area. Silicate weathering of the rock dust permanently binds a large amount of CO2 from the atmosphere.

The DITF is leading the joint project "DACCUS-Pre*". The basic idea of the project is to develop a new building material that stores carbon in the long term and removes more CO2 from the atmosphere than is emitted during its production.       

In collaboration with the company TechnoCarbon Technologies, the project is now well advanced - a first demonstrator in the form of a house wall element has been realized. It consists of three materials: Natural stone, carbon fibers and biochar. Each component contributes in a different way to the negative CO2 balance of the material:

Two slabs of natural stone form the exposed walls of the wall element. The mechanical processing of the material, i.e. sawing in stone cutting machines, produces significant quantities of stone dust. This is very reactive due to its large specific surface area. Silicate weathering of the rock dust permanently binds a large amount of CO2 from the atmosphere.

Carbon fibers in the form of technical fabrics reinforce the side walls of the wall elements. They absorb tensile forces and are intended to stabilize the building material in the same way as reinforcing steel in concrete. The carbon fibers used are bio-based, produced from biomass. Lignin-based carbon fibers, which have long been technically optimized at DITF Denkendorf, are particularly suitable for this application: They are inexpensive due to low raw material costs and have a high carbon yield. In addition, unlike reinforcing steel, they are not susceptible to oxidation and therefore last much longer. Although carbon fibers are more energy-intensive to produce than steel, as used in reinforced concrete, only a small amount is needed for use in building materials. As a result, the energy and CO2 balance is much better than for reinforced concrete. By using solar heat and biomass to produce the carbon fibers and the weathering of the stone dust, the CO2 balance of the new building material is actually negative, making it possible to construct CO2-negative buildings.

The third component of the new building material is biochar. This is used as a filler between the two rock slabs. The char acts as an effective insulating material. It is also a permanent source of CO2 storage, which plays a significant role in the CO2 balance of the entire wall element.

From a technical point of view, the already realized demonstrator, a wall element for structural engineering, is well developed. The natural stone used is a gabbro from India, which has a high-quality appearance and is suitable for high loads. This has been proven in load tests.  Bio-based carbon fibers serve as the top layer of the stone slabs. The biochar from Convoris GmbH is characterized by particularly good thermal insulation values.

The CO2 balance of a house wall made of the new material has been calculated and compared with that of conventional reinforced concrete. This results in a difference in the CO2 balance of 157 CO2 equivalents per square meter of house wall. A significant saving!

* (Methods for removing atmospheric carbon dioxide (Carbon Dioxide Removal) by Direct Air Carbon Capture, Utilization and Sustainable Storage after Use (DACCUS).

Source:

Deutsche Institute für Textil- und Faserforschung

Robot system (c) STFI
20.03.2024

STFI: Highlights of textile research at Techtextil 2024

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

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

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

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

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

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

More information:
STFI Techtextil Smart textiles
Source:

Sächsisches Textilforschungsinstitut e.V. (STFI)

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

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

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

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

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

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

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

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

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

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

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

Source:

Deutsche Institute für Textil- und Faserforschung