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U Kentucky CAER receives $1M for carbon fiber research

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Department of Energy (DOE) grant to continue their research in developing low-cost, high-strength carbon fiber. The center’s Carbon Materials Technologies Group received the award for a project titled “Precursor Processing Development for Low Cost, High Strength Carbon Fiber for Composite Overwrapped Pressure Vessel Applications.”

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Swedish researchers explore use of carbon fiber as active electrode in structural battery for electric vehicles

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Woven carbon fiber can act as an electrode for lithium ion batteries. Researchers in Sweden are exploring the use of carbon fiber as an active electrode in a multifunctional structural Li-ion battery in an electric car; i.e., electrical storage is incorporated into the body of the car. In this €3.4-million

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Asahi Kasei to present diversified material solutions for EV batteries and circular economy at Fakuma 2023

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This year, Asahi Kasei will put a special focus on its broad range of materials for lightweight, compact, and safe electric vehicle battery solutions. The company is currently developing a new continuous glass fiber reinforced thermoplastic, LENCEN, and will present it for the first time at Fakuma.

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Ford Performance 1050 kW electric SuperVan 4.2 to run Pikes Peak

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Ford Performance is heading to the 101 st running of “The Broadmoor Pikes Peak International Hill Climb brought to you by Gran Turismo” with the all-new, improved electric Ford SuperVan 4.2. specifically designed to conquer the mountain and showcase the extreme limits of electric power. The SuperVan 4.2, The SuperVan 4.2,

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Chalmers team develops structural battery that performs 10x better than previous versions

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It contains carbon fiber that serves simultaneously as an electrode, conductor, and load-bearing material. The structural battery uses carbon fiber as a negative electrode, and a lithium iron phosphate-coated aluminum foil as the positive electrode. GPa, and tensile strength exceeding 300?MPa. Image: Marcus Folino.

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MIT team devises approaches for practical carbon-nanotube-coated carbon fiber; stronger, more electrically conductive

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MIT scientists demonstrated two approaches for growing CNTs on carbon fiber without degrading the fiber strength. Researchers at MIT have demonstrated two approaches for producing carbon fibers coated in carbon nanotubes without degrading the underlying fiber’s strength. Credit: ACS, Steiner et al.

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Ford and Dow partner to research use of advanced carbon fiber composities in high-volume vehicles

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Ford Motor Company is partnering with Dow Automotive Systems, a business unit of The Dow Chemical Company, to research the use of advanced carbon fiber composites in high-volume vehicles. However, it’s particularly critical to improving the range of plug-in hybrid and battery electric vehicles.