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首页> 外文期刊>International journal of impact engineering >Crushing behaviors of unidirectional carbon fiber reinforced plastic composites under dynamic bending and axial crushing loading
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Crushing behaviors of unidirectional carbon fiber reinforced plastic composites under dynamic bending and axial crushing loading

机译:动态弯曲和轴压荷载下单向碳纤维增强塑料复合材料的破碎行为

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摘要

The dynamic crushing characteristics of unidirectional carbon fiber reinforced plastic composites under two loading types, dynamic three-point bending and axial crushing, are investigated by experiment and finite element simulation. Hat section samples with two different layup orientations are tested at various impact velocities to investigate its effects. The experiment results show that delamination plays a critical role in dynamic bending deformation. Different layup orientations lead to similar crushing bending behaviors, but remarkable variations in delamination pattern evolutions. In contrast, layup orientation exerts more significant effects on failure modes and energy absorption in axial crushing. A finite element model with multiple layers of thick shell element and cohesive element is established, and simulations are performed for both dynamic three-point bending and axial crushing. The model can capture the crushing behaviors in the two loading types reasonably well. The damage evolution and energy absorption through various mechanisms at different loading conditions are discussed.
机译:通过实验和有限元模拟研究了两种负载类型,动态三点弯曲和轴压制下单向碳纤维增强塑料复合材料的动态破碎特性。在各种冲击速度下测试具有两种不同叠层取向的帽子段样本,以研究其效果。实验结果表明,分层在动态弯曲变形中起着关键作用。不同的铺设方向导致相似的粉碎弯曲行为,但分层模式的变化显着变化。相比之下,上层取向对轴压力的故障模式和能量吸收产生更大的影响。建立了具有多层厚壳元件和粘合元件的有限元模型,并且对动态三点弯曲和轴压进行了模拟。该模型可以合理地捕获两种负载类型中的破碎行为。讨论了通过不同负载条件下各种机制的损伤演化和能量吸收。

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