材料科学
应变率
复合材料
有限元法
本构方程
磁滞
下降(电信)
压缩(物理)
结构工程
计算机科学
量子力学
电信
物理
工程类
作者
D.-S. Liu,Z.-H. Chen,Chung-Yu Tsai,R.-J. Ye,Kaixuan Yu
标识
DOI:10.1017/jmech.2016.98
摘要
Abstract EVA foams, like all other polymers, also exhibit strain-rate effects and hysteresis. However, currently available approaches for predicting the mechanical response of polymeric foam subjected to an arbitrarily imposed loading history and strain-rate effect are highly limited. Especially, the strain rates in the intermediate rate domain (between 10 0 and 10 2 s –1 ) are extremely difficult to study. The use of data generated through the drop tower technique for implementation in constitutive equations or numerical models has not been considered in past studies. In this study, an experiment including a quasi-static compression test and drop impact tests with a high speed camera was conducted. An inverse analysis technique combined with a finite element model for material parameter identification was developed to determine the stress–strain behavior of foam at different specific strain rates. It was used in this study to simulate multiple loading and unloading cycles on foam specimens, and the results were compared with experimental measurements.
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