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Structural and mechanical characterization of carbon fibers grown by laser induced chemical vapor deposition at hyperbaric pressures

机译:激光诱导化学气相沉积在高压压力下生长的碳纤维的结构和力学表征

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摘要

Laser induced chemical vapor deposition (LCVD) of freestanding carbon fibers from ethylene at hyperbaric pressures was investigated. Relationships between processing conditions, growth behavior, microstructure, and mechanical properties of the carbon fibers were established. It is found that the fiber growth rates are limited by surface reaction kinetics at low temperatures and limited by gas phase nucleation at high temperatures. At higher pressures and intermediate temperatures, growth becomes mass transport limited whereupon the fibers exhibit drastic changes in morphology and microstructure from a core-shell, smooth appearance to nodular formations. The tensile strengths of the carbon fibers grown by LCVD are generally poor due to the nature of graphitic carbon deposits. However, the Weibull modulus among the LCVD grown carbon fibers was found to be very high. Effects of processing conditions and microstructure on the fiber strengths are observed and discussed. (c) 2020 Elsevier Ltd. All rights reserved.
机译:研究了激光诱导从乙烯处的独立碳纤维在高压压力下的化学气相沉积(LCVD)。建立了碳纤维的加工条件,生长行为,微观结构和机械性能之间的关系。发现纤维生长速率受低温下表面反应动力学的限制,并在高温下受气相成核的限制。在较高的压力和中间温度下,生长变为大规模运输限制,因此纤维从核心壳,光滑外观与结节性形成表现出形态和微观结构的激烈变化。由于石墨碳沉积物的性质,LCVD生长的碳纤维的拉伸强度通常差。然而,发现LCVD生长碳纤维中的威布尔模量非常高。观察和讨论了加工条件和微观结构对纤维强度的影响。 (c)2020 elestvier有限公司保留所有权利。

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