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Advanced Ceramic Fibers LLC demonstrates ultra-high temperature ceramic matrix composites using SiC and other metallic carbides for applications in aerospace, defense, energy and more.
GTNANO ANT, validated through multiple Phase I-III SBIR/STTR projects, are compatible with a wide range of composite materials and processes, demonstrating ILSS, toughness and fatigue resistance.
ITAR and JCP certifications enable aerospace and defense customers to benefit from Pyromeral’s thermal management solutions.
Carbeon C/C-SiC ceramic matrix composites are being developed and tested for rocket nozzles, onboard the International Space Station and in electric aviation, metal treatment and reactor applications.
Three partner universities in Australia aim to mature research for Change Climate’s Byoxy bio-epoxy resin formulation, relying on environmental simulation testing and structural composites expertise.
A look at recently reported design, material and process innovations for composites-intensive battery enclosures, developed to support the ramp-up of EV and AAM vehicles.
Azista USA offers polymers and processes for carbon/carbon and other CMC, including novel hot-melt phenolic and phthalonitrile prepregs for faster cycle times, alternative solutions.
U.S. research institute advances “infiltration-free” process for improved performance, durability and affordability of materials able to withstand highly corrosive environments at temperatures beyond 700°C.
Santa Ana location will focus on materials development specifically for aviation and space sectors, acting as a collaborative space with universities and research institutes, as well as Kordsa’s other facility locations.
The collaboration focuses on developing parameters for repeatable and reliable pellet-fed 3D printing using the carbon fiber-reinforced high-temperature tooling resin.