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Poisson's ratio of a hyperelastic foam under quasi-static and dynamic loading

机译:准静态和动态载荷下超弹性泡沫的泊松比

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摘要

Poisson's ratio is a material constant representing compressibility of material volume. However, when soft, hyperelastic materials such as silicone foam are subjected to large deformation into densification, the Poisson's ratio may rather significantly change, which warrants careful consideration in modeling and simulation of impact/shock mitigation scenarios where foams are used as isolators. The evolution of Poisson's ratio of silicone foam materials has not yet been characterized, particularly under dynamic loading. In this study, radial and axial measurements of specimen strain are conducted simultaneously during quasi-static and dynamic compression tests to determine the Poisson's ratio of silicone foam. The Poisson's ratio of silicone foam exhibited a transition from compressible to nearly incompressible at a threshold strain that coincided with the onset of densification in the material. Poisson's ratio as a function of engineering strain was different at quasi-static and dynamic rates. The Poisson's ratio behavior is presented and can be used to improve constitutive modeling of silicone foams subjected to a broad range of mechanical loading.
机译:泊松比是表示材料体积可压缩性的材料常数。但是,当柔软的超弹性材料(例如硅酮泡沫)经受大的变形而变致密时,泊松比可能会发生相当大的变化,这需要在使用泡沫作为隔离器的冲击/减震方案的建模和仿真中进行仔细考虑。硅泡沫材料的泊松比的变化尚未得到表征,特别是在动态载荷下。在这项研究中,在准静态和动态压缩测试期间同时进行了样品应变的径向和轴向测量,以确定硅泡沫的泊松比。硅泡沫的泊松比在阈值应变下显示出从可压缩到几乎不可压缩的转变,该极限应变与材料中致密化的开始相吻合。泊松比作为工程应变的函数在准静态和动态速率下是不同的。提出了泊松比行为,可用于改善承受广泛机械负荷的有机硅泡沫的本构模型。

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