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Influence of veil interleave distribution on the delamination resistance of cross-ply CFRP laminates under low velocity impact

机译:面纱交织分布对低速冲击下交叉层CFRP层压层的分层抗性的影响

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This paper focuses on the influence of polyphenylene sulfide (PPS) veil distribution within unidirectional carbon fibre reinforced polymer (CFRP) laminates under low velocity impact (LVI). Tests were conducted on a baseline layup of (0/90)(7s) modified with various levels of veil interleaving at the middle or the outer plies. The results demonstrate that veil interleaving can reduce and migrate the damage from predominantly inter-laminar to intra-laminar for veils positioned in the outer plies. The interleaved configurations also display differences in the impact stiffness [1] after the Delamination Threshold Load (DTL), implying the level of damage is lower than those with fewer veils and those positioned at the mid-level neutral plane. Interesting changes in the impact force history are also observed where a smoothing effect around the DTL is achieved through interleaving. Fracture migration effects are also considered and provide a significant insight into the damage characteristics when using CFRP laminates with interleaved PPS veils under LVI.
机译:本文侧重于在低速冲击下(LVI)下单向碳纤维增强聚合物(CFRP)层压层内聚苯硫醚(PPS)面纱分布的影响。在中间或外层的各种面纱交织的改性(0/90)(7S)的基线上篮上进行测试。结果表明,面纱交织可以减少和迁移主要是层间互连,用于位于外层中的面纱的层内。交织配置也显示在分层阈值负载(DTL)之后的冲击刚度[1]的差异,这意味着损坏水平低于具有较少面纱的损坏和位于中间中性平面的那些。还观察到冲击力历史的有趣变化,其中通过交织实现DTL周围的平滑效果。还考虑了骨折迁移效应,并在使用LVI下使用CFRP层压板时,对损伤特性进行显着洞察。

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