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Experimental investigation of the failure envelope of unidirectional carbon-epoxy composite under high strain rate transverse and off-axis tensile loading

机译:单向碳-环氧复合材料在高应变率横向和离轴拉伸载荷下破坏包络的实验研究

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The mechanical response of the carbon-epoxy material system HexPly?IM7-8552 was investigated under transverse tension and combined transverse tension / in-plane shear loading at quasi-static and dynamic strain rates. The dynamic tests of the transverse tension and off-axis tension specimens were carried out on a split-Hopkinson tension bar system, while the quasi-static reference tests were performed on a standard electro-mechanical testing machine. Digital image correlation was used for data reduction at both strain rate regimes. For the high rate tests, the strain rate in loading direction was adjusted to reach approximately the same strain rate value in the fracture plane for each specimen. The measured axial strengths were transformed from the global coordinate system into the combined transverse tension-shear stress space of the material coordinate system and compared with the Puck Mode A criterion for inter-fibre failure. A good correlation between the experimental data and the predicted failure envelopes was found for both investigated strain rate regimes.
机译:研究了碳-环氧树脂材料系统HexPly?IM7-8552在准静态和动态应变速率下的横向拉伸以及横向拉伸/平面内剪切载荷的机械响应。在分开的霍普金森张力杆系统上进行横向拉伸和离轴拉伸样品的动态测试,而准静态参考测试则在标准的机电测试机上进行。数字图像相关性用于两种应变率下的数据缩减。对于高速率测试,将加载方向的应变率调整为在每个样本的断裂平面中达到近似相同的应变率值。将测得的轴向强度从整体坐标系转换为材料坐标系的组合横向拉伸-剪切应力空间,并与纤维间破坏的Puck模式A标准进行比较。对于两种调查的应变率方案,都发现实验数据与预测的破坏包络线之间具有良好的相关性。

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