首页> 外文会议>Materials and processing technology—60 years of SAMPE progress >STRUCTURE AND PROPERTIES OF CARBON FIBERS PRODUCED USING MICROWAVE-ASSISTED PLASMA TECHNOLOGY. PART 1
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STRUCTURE AND PROPERTIES OF CARBON FIBERS PRODUCED USING MICROWAVE-ASSISTED PLASMA TECHNOLOGY. PART 1

机译:微波辅助等离子体技术生产碳纤维的结构与性能第1部分

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Commercial grade carbon fibers are currently produced by thermal pyrolysis of a polyacrylonitrile (PAN) precursor. The most significant cost factors in carbon fiber production are the high cost of precursors, high capital equipment costs and the energy costs. The Department of Energy is supporting development efforts to reduce costs in both precursor production and conversion areas. rnOak Ridge National Laboratory (ORNL) has been developing new technologies to lower the cost of manufacturing of PAN based carbon fibers. Microwave-assisted plasma (MAP) technology is a novel process recently developed at ORNL specifically to meet this technological requirement. rnThe properties and structure of several PAN-precursor carbon fiber tows, MAP processed at different line speeds, were evaluated. The results indicate that the MAP carbonization process is a viable technical alternative to conventional oven processing. MAP technology produces carbon fibers with physical and mechanical properties that are comparable to those of conventional, inexpensive commercial grade fibers. rnThe morphology of the MAP carbon fibers manufactured with different processing parameters was evaluated using wide-angle X-ray diffraction techniques. The results indicate that the MAP fibers generally exhibit similar morphological characteristics compared to current commercial grade, PAN-based, carbon fiber produced by conventional means.
机译:目前,商业级碳纤维是通过聚丙烯腈(PAN)前体的热解而生产的。碳纤维生产中最重要的成本因素是前体成本高,固定设备成本高和能源成本高。能源部正在支持开发工作,以降低前体生产和转化领域的成本。橡树岭国家实验室(ORNL)一直在开发新技术以降低PAN基碳纤维的制造成本。微波辅助等离子体(MAP)技术是ORNL最近开发的一种新工艺,专门用于满足该技术要求。 rn评价了几种PAN前体碳纤维丝束(在不同的线速度下加工)的性能和结构。结果表明,MAP碳化过程是常规烘箱加工的可行技术替代方案。 MAP技术生产的碳纤维的物理和机械性能可与传统的廉价商业级纤维相媲美。 rn使用广角X射线衍射技术评估了以不同加工参数制造的MAP碳纤维的形态。结果表明,与通过常规方法生产的当前商业级,基于PAN的碳纤维相比,MAP纤维通常表现出相似的形态特征。

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