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ReForm’s pultrusion technology with Avient’s composite materials enables curved continuous fiber TPC profiles demonstrated in the PolyDowel infrastructure project.
Led by the Brightland Materials Center, consortium members are developing a flexible process chain, demonstrated via battery casings and wind blades, to repurpose waste directly where it is generated.
Carbon fiber enables KASE Pumping Systems to eliminate corrosion and increase durability, including a high-capacity 6,500-gpm, ultra-compact 200-pound pump that aids emergency services.
At its opening, iCOMAT demonstrated how its specialized RTS production lines will support a variety of composite space innovations and build up the U.K. space sector.
The Composite Materials Handbook-17 is publishing new data and industry best practices, helping to fill the aerospace industry’s growing knowledge transfer gap and support advanced materials and structures.
Broadband, flexible material offers protection against radiation, heat and electromagnetic interference, and maintains performance across curved surfaces and slanted angles, outperforming existing materials by up to 100 times.
CAMX 2024: Equipment investments and partner collaborations advance bespline’s curved panel offerings and composite part construction services.
Rapid Tow Sheering (RTS), commercialized by iCOMAT, enables in-plane shearing of tows to steer fibers, eliminating concern of buckled tows and wrinkles.
X-Track worked with bespline to develop an easy-to-install, reusable, customizable composite sandwich panel alternative to dirt BMX and motorcross tracks.
Research at Faserinstitut Bremen’s ECOMAT site, alongside industry partners, aims to enable sustainable, aerospace-focused composites — including thermoplastic welding and cryogenic material testing.