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#Composites

Flipts & Dobbels opens new pathways for biocomposites within VIBES Initiative

Through its involvement in the VIBES project, Flipts & Dobbels has contributed to the VIBES collaboration’s latest breakthrough: the successful manufacture of a carbon and natural fibre panel made with a bisphenol-free epoxy resin using resin infusion techniques. This achievement marks an important milestone in the development of sustainable, high performance composite materials.
Through its involvement in the VIBES project, Flipts & Dobbels has contributed to the VIBES collaboration’s latest breakthrough: the successful manufacture of a carbon and natural fibre panel made with a bisphenol-free epoxy resin using resin infusion techniques  © 2024 Flipts & Dobbels
Through its involvement in the VIBES project, Flipts & Dobbels has contributed to the VIBES collaboration’s latest breakthrough: the successful manufacture of a carbon and natural fibre panel made with a bisphenol-free epoxy resin using resin infusion techniques © 2024 Flipts & Dobbels


Flipts & Dobbels has been supporting the VIBES project for over four years, working with industry innovators to advance the development of bio-based composites by leveraging recyclable epoxy resins, lignin-based carbon fibres and natural flax reinforcements. These materials align with the VIBES goal of reducing environmental impact whilst maintaining high performance standards.

As part of the VIBES collaboration, manufacturing specialists Juno Composites explored key innovations, including the impact of moisture content in natural flax textiles on mechanical performance. This research, which paralleled some of the Alliance European Scientific Council ’s own work on moisture sensitivity, emphasizes the need for relying on the technical know-how of flax reinforcements manufacturers.

“The VIBES project has demonstrated that to fully realise the potential of flax fibres in performance composite applications, all aspects of the entire flax fibre production process, from seed selection to textile manufacturing, should be considered. With more than a hundred years’ experience of working with flax, our company is proud to support the continuous improvements delivered by the VIBES project.” said Caroline Flippts, Flipts & Dobbels.

The Alliance for European Flax-Linen & Hemp remains steadfast in its commitment to supporting its members like Flipts & Dobbels, as they lead the way in developing greener solutions.



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#Research & Development

Novel flame-retardant and recyclable fiber-reinforced composite

Airplanes and passenger trains must meet strict safety requirements, including fire safety standards. This calls for materials that are flame-retardant, lightweight, robust, and scalable. Empa researchers, in collaboration with their industry partner Elantas, have now succeeded for the first time in making such a material – a composite – fully recyclable.

#Composites

WHILL selects Teijin’s tough, lightweight Carbon Fiber Composite for new last-mile mobility

Teijin Limited announced today that WHILL Inc., a global leader in inclusive mobility technology, has selected Sereebo® P CFP series, a carbon fiber-reinforced thermoplastic (CFRTP) material, for key structural components of the upcoming WHILL Model C Lite. Sereebo® P CFP series provides high strength, light weight, design flexibility and system cost advantages to the Model C Lite, which is a battery powered, single-seat, last-mile device. This new model combines maneuverability with light weight and one-handed folding to ensure ease of handling and operation.

#Composites

Fewer pores, greater impact tolerance: Peter Dornier Foundation Prize 2026 honours material research on fibre-reinforced composite components for aerospace industry

Microscopically small pores that form during manufacture, or barely visible impact damage, can severely impair the load-bearing capacity and service life of fibre-reinforced composite components. Two young researchers have presented groundbreaking work in this field and will both be awarded the 2026 Peter Dornier Foundation Prize: Dr.-Ing. Benedikt Neitzel from the Technical University of Ilmenau for his doctoral thesis on pore minimisation in the RTM process, and Johanna Buschmann, M.Sc., for her master’s thesis, completed at the German Aerospace Centre, on the improved impact tolerance of 3D fabrics compared to 2D laminates.

#Composites

Carbon Revolution wins Composites Australia Engineering Team Excellence Award

Carbon Revolution has won the Engineering Team Excellence Award at the 2026 Composites Australia Annual Industry Awards.

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#Knitting & Hosiery

KARL MAYER invites the Global Textile Industry to celebrate its 90th anniversary at its German Headquarters in 2027

KARL MAYER is turning its anniversary year 2027 into a milestone for the textile sector. To mark its 90th anniversary, the industry leader is inviting customers, partners, and experts from around the world to a unique event series in September aimed at pushing boundaries, unlocking new opportunities, and jointly setting the course for a new era in textiles – just as KARL MAYER has done throughout its history. The company’s headquarters in Obertshausen, near Frankfurt, is the place to be.

#Associations

ITMF names three winners of the Sustainability & Innovation Award 2026

Three projects from the UK, Korea and China have been selected as winners of the ITMF Sustainability & Innovation Award 2026. The projects address textile-to-textile recycling, chemical recycling for automotive textiles and a regenerative approach combining silk production with ecological restoration.

#Recycling / Circular Economy

nova-Institute launches groundbreaking Advanced Recycling Database for strategic market insight

The new Advanced Recycling Database reduces complexity by providing industry stakeholders with up-to-date expert-reviewed intelligence on companies, technologies, plants, capacities, locations, products and partnerships across the global advanced recycling landscape.

#Yarns

Durak Maxibalance thread supports users’ movement and balance comfort

Durak Tekstil, a leading brand in its industry, has developed Durak Maxibalance, a new product engineered with bio-ceramic and FAR IR technology. Ushering in a new era for sportswear, activewear, and medical textiles, this technology offers features designed to support balance and movement comfort by reflecting the energy absorbed from the body back into it.

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