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Auxeticity effect on crushing characteristics of auxetic foam-filled square tubes under axial loading

机译:胀性对轴向载荷下泡沫填充方管破碎特性的影响

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This paper treats energy absorption and crushing characteristics of auxetic foam-filled square-section tubes under axial loading condition. The influence of auxeticity effect on the structural collapse was experimentally investigated to quantify the interaction effect between Poisson's ratios of foam (ranging from - 0.31- 0.03) and square tube walls under quasi-static and dynamic loadings. The validated computer simulation technique was employed to conduct a series of parametric study in order to evaluate the influence of tube parameters on the energy absorption responses. It is evident that negative Poisson ratio effectively influences the crushing response and energy absorption capability of auxetic foam-filled square tubes. Moreover, it was found that increasing the auxeticity level of foam filler enhances crashworthiness performance of foam-filled structures under both quasistatic and dynamic loading conditions. The primary outcome of this study is a design guideline for the use of auxetic foam in different ranges of Poisson's ratio as a core for an energy absorber device where impact loading is expected.
机译:本文研究了在轴向载荷条件下膨胀泡沫塑料方形截面管的能量吸收和破碎特性。实验研究了胀性效应对结构塌陷的影响,以量化准静态和动态载荷下泡沫的泊松比(介于-0.31- 0.03之间)与方管壁之间的相互作用。为了验证管参数对能量吸收响应的影响,采用了经过验证的计算机仿真技术进行了一系列参数研究。显然,负泊松比有效地影响了膨胀泡沫填充方管的破碎响应和能量吸收能力。此外,发现在准静态和动态载荷条件下,增加泡沫填充剂的膨胀性水平都增强了泡沫填充结构的耐撞性能。这项研究的主要结果是设计指南,该模型将在不同泊松比范围内的膨胀泡沫用作预期冲击载荷的能量吸收器装置的核心。

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