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Analysis of experimentally assessed EVA foams with mixed solid-shell elements capable of very large strains

机译:分析评估的,具有很大应变的混合固体壳单元的EVA泡沫

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We analyze, both experimentally and numerically, two EVA foam specimens with densities rho = 120 kg/m(3) and rho = 220 kg/m(3). In the numerical analysis, we use our recent finite strain element formulations based on least-squares strains (in both solid-shells and full three-dimensional discretizations). The Ogden-Hill hyperelastic model is coupled with a one-term standard solid containing a Maxwell element. Compression experiments are performed to evaluate the Ogden-Hill properties for the two EVA foams. Viscous properties are obtained from interpolation of creep results reported by R. Verdejo. An exponential integration of the internal variables (which have the role of back-stresses) is proposed along with the complete description of the constitutive system. The classical analysis of the acoustic tensor is also performed for the measured properties. Four benchmark examples are introduced.
机译:我们通过实验和数值分析两个密度为rho = 120 kg / m(3)和rho = 220 kg / m(3)的EVA泡沫样品。在数值分析中,我们使用基于最小二乘应变的最新有限应变元素公式(在固体壳和完整三维离散化中)。 Ogden-Hill超弹性模型与包含Maxwell元素的单项标准实体耦合。进行压缩实验以评估两种EVA泡沫的Ogden-Hill性能。粘性是从R. Verdejo报告的蠕变结果的插值中获得的。提出了内部变量的指数积分(其具有反应力的作用)以及本构系统的完整描述。声学张量的经典分析也针对测量的属性进行。介绍了四个基准示例。

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