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#Composites

DITF honored with JEC Composites Innovation Award

Hermann Finckh received the prestigious award in the category Equipment Machinery & Heavy Industries for the innovation MAXIMUM WEIGHT REDUCTION OF COMPOSITE TOOLS.

The research team from the German Institutes of Textile and Fiber Research Denkendorf (DITF) developed a new modular cutting tool for woodworking machines, which was produced and successfully tested by the industrial partner Leitz GmbH & Co. KG.

The extremely lightweight planing tool was made from carbon fiber-reinforced plastics (CFRPs) instead of aluminum using a completely new modular construction principle. As a result, it weighs 50 percent less than conventional tools. It enables significantly higher working speed, which enables a one-and-a-half-fold increase in productivity. The development of the extreme-lightweight principle was performed by numerical simulation and every solution was virtually tested in advance. A patent application has been filed for the concept.

Award-winning planer cutter in extremely lightweight construction. (c) 2024 DITF
Award-winning planer cutter in extremely lightweight construction. (c) 2024 DITF

JEC World in Paris is the most important trade fair of composites materials and showcases the entire value chain of the composites industry. Each year, the JEC Group recognizes the most innovative and creative projects that demonstrate the full potential of composites through the prestigious JEC Composites Innovation Awards.

Hermann Finckh (DITF) and Andreas Kisselbach (Leitz GmbH & Co. KG) presenting the JEC Composites Innovation Award. (c) 2024 Leitz
Hermann Finckh (DITF) and Andreas Kisselbach (Leitz GmbH & Co. KG) presenting the JEC Composites Innovation Award. (c) 2024 Leitz


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#Research & Development

Europe is committed to recycling end-of-life wind turbine blades

Starting in 2026, Europe’s wind energy industry has committed itself to ensuring that wind turbine blades do not end up in landfills once they reach the end of their service life. The EU-funded research project REWIND is exploring ways to reuse this composite waste. The German Institutes of Textile and Fiber Research Denkendorf (DITF) are one of 13 project partners from seven countries.

#Research & Development

Smart textiles reversibly change shape in an energy-efficient manner in response to ambient temperature

Self-actuating textile structures are used in a wide range of applications, such as medical technology, automation, architecture, agriculture, and the apparel industry. An example is the use of shading nets in greenhouses, which can be deployed and retracted depending on the sunlight intensity. The German Institutes of Textile and Fiber Research Denkendorf (DITF) are developing textiles based on shape-memory polymers with reversibly controllable geometry.

#Research & Development

ALADIN paves the way for circular and demand-driven textile production in Europe

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#Research & Development

Textile climate control system in workwear – exhibition at the 2026 SME Innovation Day!

Conventional protective workwear often reaches its limits during strenuous physical activity. In particular, the transport of sweat and excess body heat poses a problem. The German Institutes of Textile and Fiber Research (DITF) conducted research on flow-optimized, air-conducting textile structures that enable targeted climate control directly on the body. These structures can be integrated straight into protective work garments. The textile climate control system supports the body’s natural thermoregulation. This contributes to improved workplace safety and comfort.

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#Research & Development

Novel flame-retardant and recyclable fiber-reinforced composite

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#Composites

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

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#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

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#Recycled Fibers

RE&UP’s Next-Gen Cotton fibers power Zalando private label t-shirt collection crafted from innovative recycled textiles

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#Heimtextil 2027

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#Recycled Fibers

Driving circularity with Uster Recycled Fiber Matrix

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#Digital Printing

Mimaki advances DTF productivity and stability with new TxF330-800

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