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Radial Inertia Effect on Dynamic Compressive Response of Polymeric Foam Materials

机译:径向惯性对聚合物泡沫材料动态压缩响应的影响

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Polymeric foams have been extensively used in shock isolation applications because of their superior shock or impact energy absorption capability. In order to meet the shock isolation requirements, the polymeric foams need to be experimentally characterized and numerically modeled in terms of material response under shock/impact loading and then evaluated with experimental, analytical, and/or numerical efforts. Measurement of the dynamic compressive stress-strain response of polymeric foams has become fundamental to the shock isolation performance. However, radial inertia has become a severe issue when characterizing soft materials. It is even much more complicated and difficult to address the radial inertia effect in soft polymeric foams. In this study, we developed an analytical method to calculate the additional stress induced by radial inertia in a polymeric foam specimen. The effect of changing profile of Poisson's ratio during deformation on radial inertia was investigated. The analytical results were also compared with experimental results obtained from Kolsky compression bar tests on a silicone foam.
机译:由于其优越的休克或冲击能量吸收能力,聚合物泡沫已被广泛用于休克隔离应用。为了满足休克隔离要求,需要在休克/冲击载荷下的材料响应方面进行实验表征和数值模拟,然后用实验,分析和/或数值努力进行评估。聚合物泡沫的动态压缩应力 - 应变响应的测量变得基本上的冲击隔离性能。然而,在表征软材料时,径向惯性已成为严重的问题。甚至更复杂,难以解决软聚合物泡沫中的径向惯性效应。在这项研究中,我们开发了一种分析方法来计算聚合物泡沫样品中径向惯性诱导的额外应力。研究了在径向惯性变形过程中改变泊松比轮廓的效果。还将分析结果与在硅氧烷泡沫上的Kolsky压缩棒试验中获得的实验结果进行了比较。

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