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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Fatigue damage characterization in plain-weave carbon-carbon fabric reinforced plastic composites
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Fatigue damage characterization in plain-weave carbon-carbon fabric reinforced plastic composites

机译:平纹碳-碳纤维增强塑料复合材料的疲劳损伤表征

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The multi-mode fatigue failure process in a plain-weave woven carbon-carbon fabric reinforced polyester matrix composite has been investigated. Enhanced dye penetrant X-ray radiography, scanning electron fractography, optical microscopy, and edge replication techniques have been employed to examine the fatigue damage mechanisms. The 8 ply laminates were obtained from polyester resin-prepreg plain-weave carbon-carbon fabric layers, stacked in three different stacking sequences producing a unidirectional (0)(8), and two angle-plied (0,0,45,-45)(s) and (45,-45,0,0)(s) fiber orientations. It is shown that the fatigue failure in the angle-plied (0,0,45,- 45)(s) and (45,- 45,0,0)(s) laminates, occurs through a multi-mode damage process, which involves matrix cracking, fiber-matrix debonding, fiber fracture, and delamination. Delamination of the stacked plies was noted to be the dominant damage process, which led to the eventual fatigue fracture in the angle-plied laminates. In the unidirectional (0)(8) laminates, the fatigue failure occurred in a more simple, yet a rather more catastrophic manner. In these laminates, instead of delamination, the fatigue failure occurred predominantly by a fiber fracture process. [References: 17]
机译:研究了平纹机织碳碳纤维增强聚酯基复合材料的多模疲劳破坏过程。增强的染料渗透剂X射线照相术,扫描电子断层照相术,光学显微镜和边缘复制技术已用于检查疲劳损伤机理。从聚酯树脂-预浸料平纹碳-碳纤维织物层获得8层层压板,以三种不同的堆叠顺序堆叠,产生单向(0)(8)和两个角向折叠(0,0,45,-45 )和(45,-45,0,0)(s)纤维方向。结果表明,角叠合的(0,0,45,-45)(s)和(45,-45,0,0)(s)层压板的疲劳失效是通过多模损伤过程发生的,其中包括基体开裂,纤维基体剥离,纤维断裂和分层。注意到堆叠的层片的分层是主要的损坏过程,这导致了角钢叠层板最终的疲劳断裂。在单向(0)(8)层压板中,疲劳破坏以更简单但更灾难性的方式发生。在这些层压板中,疲劳破坏主要发生在纤维断裂过程中,而不是发生分层。 [参考:17]

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