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首页> 外文期刊>SAMPE Journal >Development of Commodity Grade, Lower Cost Carbon Fiber-Commercial Applications
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Development of Commodity Grade, Lower Cost Carbon Fiber-Commercial Applications

机译:商品级,低成本碳纤维商业应用的发展

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In pursuit of the goal to produce ultra-lightweight fuel efficient vehicles, there has been great excitement during the last few years about the potential for using carbon fiber reinforced composites in high volume applications. Currently, the greatest hurdle that inhibits wider implementation of carbon fiber composites in transportation is the high cost of the fiber when compared to other candidate materials. As part of the United States Department of Energy's EreedomCAR initiative, significant research is being conducted to develop lower cost, high volume technologies for producing carbon fiber. This paper will highlight the ongoing research in this area. Through Department of Energy (DOE) sponsorship, Oak Ridge National Laboratory (ORNL) and its partners have been working with the Automotive Composites Consortium (ACC) to develop technologies that would enable the production of carbon fiber at 11.00-15.40 dollars per kilogram (5-7 dollars per pound). Achievement of this cost goal, would allow the introduction of carbon fiber based composites into a greater number of applications for future vehicles. The goal of lower cost carbon fiber has necessitated the development of both alternative precursors and more efficient production methods. Alternative precursors under investigation include textile grade polyacrylonitrile (PAN) fibers and fibers from lignin-based feedstocks. Previously, as part of the research program, Hexcel Corporation developed the science necessary to allow textile grade PAN to be used as a precursor rather than typical carbon fiber grade precursors. Efforts are also underway to develop carbon fiber precursors from lignin-based feedstocks. ORNL and its partners are working on this effort with domestic pulp and paper producers and with current and future ethanol fuel producers. In terms of alternative production methods, ORNL has developed a microwave-based carbonization unit that can process pre-oxidized fiber at over 200 inches per minute. ORNL has also developed a new method of high speed oxidation and a new method for precursor stabilization. Additionally, novel methods of activating carbon fiber surfaces are under development which allow atomic oxygen concentrations as high as 25-30 percent to be achieved rather than the more typical 4-8 percent achieved by the standard industrial ozone treatment.
机译:为了实现生产超轻型省油汽车的目标,近几年来人们对在大批量应用中使用碳纤维增强复合材料的潜力感到非常兴奋。当前,与其他候选材料相比,阻碍碳纤维复合材料在运输中更广泛实施的最大障碍是纤维的高成本。作为美国能源部EreedomCAR计划的一部分,正在进行大量研究以开发低成本,大批量生产碳纤维的技术。本文将重点介绍该领域正在进行的研究。通过能源部(DOE)的赞助,橡树岭国家实验室(ORNL)及其合作伙伴一直在与汽车复合材料联盟(ACC)合作开发技术,以每公斤11.00-15.40美元的价格生产碳纤维(5 -7美元/磅)。达到此成本目标,将允许将碳纤维基复合材料引入未来汽车的更多应用中。低成本碳纤维的目标已需要开发替代前体和更有效的生产方法。正在研究的替代前体包括纺织级聚丙烯腈(PAN)纤维和木质素原料纤维。以前,作为研究计划的一部分,Hexcel Corporation开发了必要的科学,以使纺织级PAN可以用作前体而不是典型的碳纤维级前体。也正在努力从木质素基原料开发碳纤维前体。 ORNL及其合作伙伴正在与国内纸浆和造纸生产商以及现在和将来的乙醇燃料生产商一起努力。在替代生产方法方面,ORNL开发了一种基于微波的碳化装置,可以以每分钟200英寸以上的速度处理预氧化的纤维。 ORNL还开发了一种新的高速氧化方法和一种用于稳定前体的新方法。另外,正在开发活化碳纤维表面的新方法,该方法允许达到高达25-30%的原子氧浓度,而不是通过标准的工业臭氧处理获得的更典型的4-8%。

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