New approach for residual compressive strength prediction of impacted CFRP laminates

G.C. Papanicolaou, Chr. D. Stavropoulos
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引用次数: 36

Abstract

Carbon fibre-reinforced plastics (CFRP) are susceptible to low velocity impact. The damage mechanisms occurring in the laminates are dependent on several parameters and no damage occurs if the impact energy is accommodated by the elastic strain energy in the material. In the present paper a two-parameter model has been developed for residual compressive strength prediction of impacted carbon fibre-reinforced laminates. The model takes into account parameters such as stacking sequence and material properties. For verification of the model, two groups of experimental results were used: group A test results were taken from the literature, while those of group B were taken from experiments executed within the framework of an EEC project, in which the University of Patras participated as a partner. Good agreement was found between experimental findings and theoretical predictions. Nomograms derived from the present model can be used for optimum design of the carbon fibre-reinforced laminates.

冲击CFRP层合板残余抗压强度预测新方法
碳纤维增强塑料(CFRP)易受低速冲击。层合板的损伤机制取决于几个参数,如果冲击能被材料中的弹性应变能所容纳,则不会发生损伤。本文建立了一种双参数模型来预测碳纤维增强层合板的残余抗压强度。该模型考虑了堆积顺序和材料特性等参数。为了验证模型,使用了两组实验结果:A组测试结果来自文献,而B组测试结果来自欧洲经济共同体项目框架内执行的实验,帕特雷大学作为合作伙伴参与了该项目。实验结果和理论预测吻合得很好。由该模型导出的模态图可用于碳纤维增强层合板的优化设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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