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Strain-rate and off-axis loading effects on the fibre compression strength of CFRP laminates: Experiments and constitutive modelling

机译:对CFRP层压板的纤维压缩强度的应变速率和偏离轴载荷:实验和本构型建模

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摘要

A series of dynamic longitudinal compression tests have been performed on cross-ply IM7/8552 specimens cut at different off-axis angles to produce different combinations of compression and shear stresses. Together with results from previous quasi-static tests of the same kind, quasi-static and dynamic fibre kinking failure envelopes have been obtained using classical laminate theory. This new experimental data has been compared against predictions from the leading fibre kinking theories, made rate-dependent by using rate-dependent in-plane shear properties, and show that, while they can accurately predict the effects of strain rate on the uniaxial compression strength, they are unable to capture the effects of shear, neither at quasi-static nor dynamic rates. Instead, a simpler more phenomenological approach is proposed to predict the rate-dependent fibre kinking strength of FRP laminates under multi-axial loads until the micromechanics can be more accurately described.
机译:在不同的轴角切割的交叉层IM7 / 8552样本上进行了一系列动态纵向压缩测试,以产生不同的压缩和剪切应力的不同组合。使用经典层压理论获得了同一种类,准静态和动态光纤扭结故障信封的先前准静态试验的结果。已经将这种新的实验数据与来自领先的纤维扭结理论的预测进行了比较,通过使用速率依赖性面内剪切性能来依赖于率依赖,并表明它们可以准确地预测应变率对单轴压缩强度的影响,它们无法捕获剪切的效果,既不是准静态也不是动态速率。相反,提出了一种更简单的现象学方法,以预测多轴载荷下FRP层压板的速率依赖性光纤扭结强度,直到可以更精确地描述微机械。

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