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Quasi-static and dynamic progressive crushing of CF/EP composite sandwich panels under in-plane localised compressive loads

机译:在平面内局部压缩载荷下CF / EP复合夹层板的准静态和动态渐进式粉碎

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This study investigates the in-plane localised crushing responses and progressive damage mechanisms of CF/EP composite sandwich panels under both quasi-static and dynamic loadings. The effect of the indenter shape on the damage mechanisms of the CF/EP composite sandwich panels under both quasi-static and dynamic in-plane localised crushing were investigated. It was found that the specimens were prone to lamina bending under quasi-static compression irrespective of indenter shapes, whilst the specimens failed mostly with fronds fracturing with different extents of transverse shearing under dynamic crushing. The specific energy absorptions of the CF/EP composite sandwich panels under dynamic impact are 20% lower than those under quasi-static compression. An energy balance model was adopted to analyse failure mechanisms and energy dissipation. To the model, the geometry of the debris wedge was predicted using an inverse calculation with experimental validation. The results show that the crush energy is mainly consumed by friction work and bending at about 55% and 35%, respectively.
机译:本研究调查了在准静态和动态载荷下CF / EP复合夹层板的面内局部粉碎响应和渐进式损伤机制。研究了压印形状对诸如准静态和动态在线局部粉碎下CF / EP复合夹层板的损伤机构的影响。结果发现,由于压痕形状,试样在准静态压缩下倾向于薄片弯曲,而试样在动态破碎下具有不同范围的横向剪切的叶片破碎的叶片。 CF / EP复合夹层面板在动态冲击下的特定能量吸收量低于准静态压缩下的20%。采用能量平衡模型来分析故障机制和能量耗散。对于该模型,使用实验验证的逆计算预测了碎片楔的几何形状。结果表明,粉碎能量主要由摩擦工作消耗,分别以约55%和35%弯曲。

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