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Interfacial aspects of electrodeposited carbon fiber-reinforced epoxy composites using monomeric and polymeric coupling agents

机译:使用单体和聚合物偶联剂的电沉积碳纤维增强环氧复合材料的界面方面

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摘要

Using a monomeric and two polymeric coupling agents, interfacial aspects of electrodeposited (ED) carbon fiber/epoxy composites were investigated by means of fragmentation techniques and acoustic emission (AE). ED results for dipped and untreated fibers under dry and wet conditions were compared. Multifiber-embedded composites (MFC) were prepared for direct comparison. Various treating conditions such as treating time, concentration of coupling agent, and treating temperature were optimized, respectively. The adsorption mechanisms of the coupling agents onto the carbon fiber were analyzed in terms of the electrolyte molecular interactions during ED process, due to chain mobility in the aqueous solution. The microfailure mechanisms occurring from fiber breaks, and matrix and interlayer cracks were examined by AE parameters. The interfacial shear strength (IFSS) of ED-treated carbon fibers was much higher than that of the other two cases under dry and wet conditions. Well-separated AE groups were found for the untreated, the dipped, and the ED-treated cases, and significantly more AE events occurred from the ED interlayer failure between fiber and matrix than from the untreated and even than from the dipping cases. AE events from different-type interlayers may be correlated with IFSS based on the differing mechanical and chemical roles of the interlayers. (C) 2000 Academic Press. [References: 24]
机译:使用单体和两种聚合物偶联剂,通过裂解技术和声发射(AE)研究了电沉积(ED)碳纤维/环氧树脂复合材料的界面特性。比较了在干燥和潮湿条件下浸渍和未处理纤维的ED结果。制备了多纤维包埋的复合材料(MFC)用于直接比较。分别优化了各种处理条件,如处理时间,偶联剂浓度和处理温度。由于在水溶液中的链移动性,根据ED过程中电解质分子的相互作用分析了偶联剂在碳纤维上的吸附机理。通过AE参数检查了由纤维断裂,基体和层间裂纹引起的微破坏机理。 ED处理的碳纤维在干湿条件下的界面剪切强度(IFSS)远高于其他两种情况。发现未经处理,浸渍和ED处理的AE组分离良好,与未处理的甚至与浸渍的情况相比,由纤维和基质之间的ED层间破坏引起的AE事件明显多于AE。基于中间层的不同机械和化学作用,可以将来自不同类型中间层的AE事件与IFSS相关联。 (C)2000学术出版社。 [参考:24]

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