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The relation between in-plane fiber waviness severity and first ply failure in thermoplastic composite laminates

机译:热塑性复合材料层合板面内纤维波纹度严重程度与首层失效的关系

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The influence of in-plane fiber waviness on the first ply failure of quasi-isotropic thermoplastic composite laminates was investigated. The failure mode and stress at first failure were studied by using a four-point bending test and an end-loaded bending (ELB) test. The experimental results confirm that no undesirable stress concentration due to load introduction occurred in the ELB test, thereby supporting the use of this test as an alternative method to measure stress at failure. The experiments demonstrated that waviness severity affects stress at first failure and compressive damage development. The stress at first failure initially decreases with increasing maximum waviness angle and levels off as the angle starts exceeding 20 degrees. These results reinforce the hypothesis from previous research which suggests that wavy ply compressive strength is less sensitive to changes in severity at larger angles. Furthermore, it was found that kinking failure was the dominant failure mode for maximum waviness angle up to about 45 degrees. No kink band was observed in wavy regions with maximum angles above 45 degrees when there was another wavy region with a lower maximum angle in the same specimen. This means that failure is not necessarily initiated at the location where waviness is most severe.
机译:研究了面内纤维波纹度对准各向同性热塑性复合材料层合板首次铺层破坏的影响。采用四点弯曲试验和端载弯曲(ELB)试验研究了首次失效的失效模式和应力。实验结果证实,在ELB试验中,由于载荷引入,没有发生不良的应力集中,从而支持使用该试验作为测量失效应力的替代方法。实验表明,波纹严重程度会影响初次失效时的应力和压缩损伤的发展。首次失效时的应力最初随着最纹角的增加而减小,并在角度开始超过 20 度时趋于平稳。这些结果强化了先前研究的假设,即波浪形层抗压强度对较大角度下严重程度变化不太敏感。此外,研究还发现,扭结失效是最纹度角达到约45度的主要失效模式。当同一试样中存在另一个最大角度较低的波浪区域时,在最大角度大于 45 度的波浪区域中没有观察到扭结带。这意味着故障不一定在波纹最严重的位置开始。

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