纤维增强结构对导电CF/PPS层压复合材料氧化和熔融现象的影响

D. Tanabe, K. Nishiyabu, T. Kurashiki
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引用次数: 3

摘要

本研究旨在揭示CF/PPS层压复合材料的导电熔融氧化机理。使用的材料是单向的CF/PPS和编织的CF/PPS层压板。研究了外加电压、导电时间和纤维增强结构对CFRTP复合材料熔融性能的影响。通过显微观察和图像分析评价了熔点的熔化状态。实验结果表明,增强结构和电阻率对CFRTP层合材料的熔化和氧化行为有影响。两种CFRTP层合材料的熔化面积均随外加电压和导电时间的增加而增大。研究发现,为了防止熔化区域的边缘效应和轮廓形状不均匀,需要在熔化界面插入PPS薄膜。同时也证实了在低电压下编织的CF/PPS层压板是可以熔化的。
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Effects of Fiber Reinforcing Configuration on Oxidation and Melting Phenomenon of CF/PPS Laminated Composites by Electrically-Conducting
This study aims to reveal the mechanism of melting and oxidation phenomenon of CF/PPS laminated composites by electrically-conducting. The materials used are unidirectional CF/PPS and woven CF/PPS laminates. The effects of applied voltage, conducting time and fiber reinforcing configuration on melting behavior of CFRTP composites were investigated. The melting state was evaluated by microscopic observation and its image analysis. The experimental results revealed that the melting and oxidation behavior were influenced by reinforcing configuration and electric resistivity of CFRTP laminates. The melting area of both CFRTP laminates tends to increase with increasing the applied voltage and conducting time. It was found that the insertion of PPS films in melting interface was required in order to prevent the edge effect and non-uniform profile shapes of the melting area. It was also confirmed that woven CF/PPS laminates could be melted at low applied voltage.
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