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LeMond Composites licenses ORNL low-cost carbon fiber manufacturing process; transportation, renewable energy, & infrastructure

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LeMond Composites, founded by three-time Tour de France champion Greg LeMond, has licensed a low-cost, high-volume carbon fiber manufacturing process developed at the US Department of Energy’s Oak Ridge National Laboratory (ORNL). Earlier post.)

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Lux: carbon fiber to go mainstream in automobiles by 2025

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Driven by a faster-than-expected pace of technology development, carbon-fiber reinforced plastics (CFRPs) will be poised to gain widespread adoption for automotive lightweighting by 2025, according to a new report from Lux Research, “Scaling Up Carbon Fiber: Roadmap to Automotive Adoption.”. Earlier post.)

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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. Ford and Dow Chemical began working together in 2012 to develop low-cost, high-volume carbon fiber composites.

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DOE selects 3 hydrogen and fuel cell projects for transportation applications for SBIR/STTR awards

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The US Department of Energy (DOE) recently announced the FY 2012 Small Business Innovation Research and Small Business Technology Transfer (SBIR/STTR) Phase I Release 3 award winners, including three hydrogen and fuel cell projects. will optimize the cost and performance of composite cylinders for hydrogen storage using a graded construction.

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DOE launches Clean Energy Manufacturing Initiative; awards $23.5M to 5 more manufacturing R&D projects

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This new funding for advanced manufacturing—as well as the $54 million invested in 13 projects during the first round of selections in June of 2012 ( earlier post )—is to serve as a ground floor investment in CEMI. Carbon Fiber Technology Facility. Earlier post.)

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DOE to provide up to $14.2M to develop lightweight materials for advanced vehicles

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DE-FOA-0000648 ) This funding will support the development of high-strength, lightweight carbon fiber composites and advanced steels and alloys that will help vehicle manufacturers improve the fuel economy of cars and trucks while maintaining and improving safety and performance.

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Manganese hydride molecular sieve for practical hydrogen storage could cost roughly 5x less than 700 bar tanks

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For future market acceptance of hydrogen fuel cell vehicles or portable devices an efficient, low cost and practical hydrogen storage system and infrastructure suitable for all applications still needs to be developed. To achieve a driving range greater than 500 km in a fuel cell vehicle, about 5 kg of hydrogen is required. Skipper et al.

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