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New IACMI collaboration to develop advanced carbon fiber for hydrogen, natural gas storage tanks; $2.7M DOE award

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million from the US Department of Energy (DOE) to develop and validate technology that will reduce the cost of manufacturing high-performance carbon fiber by 25% to make composite natural gas or hydrogen fuel tanks to power cars and trucks. Four of the 18 projects focus on composite fuel tanks. Earlier post.).

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Borealis Fibremod technology available for N American market; glass and carbon fiber-reinforced polypropylene

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In turn, replacing engineering plastics and metal parts with energy-efficient and lighter weight PP grades leads to improved fuel economy and lower CO 2 emissions. Fibremod PP short glass fiber (SGF). Fibremod PP carbon fiber (CF).

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Magna and Ford developing prototype carbon fiber composite subframe; mass reduction of 34%

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In pursuit of lower vehicle weight to reduce emissions and improve fuel efficiency, Magna International Inc., in cooperation with Ford Motor Company, developed a prototype carbon fiber composite subframe which reduces mass by 34% compared to making a stamped steel equivalent.

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Magna to produce carbon fiber composite body panels

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Magna Exteriors, an operating unit of Magna International, has been awarded new business to supply painted automotive body panels made from carbon fiber composite material for two 2016 model-year vehicles. This effort followed the successful collaboration between Magna and Zoltek to develop CFS-Z carbon fiber sheet molding compound.

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DOE to award up to $12M for technologies to produce renewable carbon fiber from biomass

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The US Department of Energy (DOE) will award ( DE-FOA-0000996 ) up to $12 million in funding to advance the development of a cost-competitive pathway to produce high-performance carbon fiber for vehicle lightweighting from renewable non-food biomass. Reducing a vehicle’s weight by just 10% can improve fuel economy by 6% to 8%.

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Ford collaborating with DowAksa on automotive-grade carbon fiber, part of IACMI

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Ford and DowAksa are accelerating joint research to develop high-volume manufacturing techniques for automotive-grade carbon fiber, aiming to make vehicles lighter for greater fuel efficiency, performance and capability. —Jim deVries, Ford global manager, Materials and Manufacturing Research.

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DOE announces approximately $64M in funding for 18 projects to advance H2@Scale

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These projects will fuel the next round of research, development, and demonstration (RD&D) activities under H2@Scale’s multi-year initiative to fully realize hydrogen’s benefits across the economy. Other areas of focus include identifying durable and cost-effective fuel cell systems and components for medium- and heavy-duty trucks.