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Mechanical behaviour of auxetic cellular structures built from inverted tetrapods at high strain rates

机译:倒置四脚架在高应变率下构建的疏松细胞结构的力学行为

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摘要

Auxetic cellular structures build from inverted tetrapods were experimentally tested at high strain rate compression loading for the first time. The strain rates up to 10,000 s(-1) were achieved with gas powder gun, where the shock deformation mode is predominant. The deformation localizes in the deformation front between the impacting specimen and the fixed plate due to the inertia effects. This deformation mode results in stiffness increases in comparison to the quasi-static response. The results from experimental testing were used for validation of developed computational models in finite element explicit code LS-DYNA. Furthermore, the validated computational models were used for critical strain rate analysis, determination of critical loading velocities and analysis of deformation modes together with analytical constitutive crushing models of cellular structures.
机译:首次在高应变率压缩载荷下对倒四足体构建的辅助细胞结构进行了实验测试。用气粉枪达到了10,000 s(-1)的应变率,其中冲击变形模式占主导地位。由于惯性效应,变形位于冲击试样和固定板之间的变形前沿。与准静态响应相比,这种变形模式导致刚度增加。实验测试的结果用于验证有限元显式代码LS-DYNA中已开发的计算模型。此外,将经过验证的计算模型用于单元格结构的临界应变率分析,临界载荷速度的确定和变形模式的分析。

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