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Mode-Ⅱ fatigue response of AS4/8552 carbon/epoxy composite laminates interleaved by electrospun nanofibers

机译:电纺纳米纤维互氢氧化镁/环氧复合层压板的MODE-Ⅱ疲劳响应

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摘要

The advantages of applying electrospun nylon 6,6 as a toughening agent in epoxy-based composite laminates have been considered already under quasi-static mode-I and mode-II fracture loads. In the present study, the fatigue behavior of unidirectional carbon/epoxy laminates interleaved by nylon 6,6 is investigated under mode-II loading. To this aim, a 50-mu m nylon 6,6 nanofibrous mat was put between mid-layers of a carbon/epoxy laminate, and then quasi-static and cyclic loadings were applied on End Notched Flexure (ENF) samples to investigate the onset of delamination growth and crack propagation rate (da/dN) under different ratios of G(IIin)/G(IIC). The results showed that the mode-II fracture toughness increased about 161% under quasi-static loading tests. Additionally, the fatigue test results proved that the crack propagation was 14-27 times slower in the modified sample (with the same G(IImax)) because of the bridging between composite layers caused by nanofibers. Different fractography techniques including optical microscopy, microscopic 3D surface scanning device, and scanning electron microscopy (SEM) were also used to explore further the toughening mechanism.
机译:在准静态模式-I和模式-II裂缝负载下,已经考虑将Electur纺6,6作为环氧基复合层叠层中的增韧剂施加的优点。在本研究中,在Mode-II负载下研究了通过尼龙6,6交织的单向碳/环氧树脂层叠层的疲劳行为。为此目的,将50-mu m尼龙6,6纳米纤维垫置于碳/环氧树脂层压板的中间层之间,然后在末端切口弯曲(ENF)样品上施加准静态和环状载体,以研究发作在不同比率(IIIN)/ g(IIC)下的分层生长和裂纹繁殖率(DA / DN)。结果表明,在准静态加载试验下,模式-II型断裂韧性增加了约161%。另外,疲劳试验结果证明,由于由纳米纤维引起的复合层之间的桥接,改性样品中的裂纹繁殖是较慢的14-27倍(具有相同的G(IIMAX))。包括光学显微镜,微观3D表面扫描装置和扫描电子显微镜(SEM)的不同的Fractography技术也用于进一步探索增韧机构。

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