材料科学
复合材料
本构方程
超弹性材料
应变率
粘弹性
抗压强度
压缩(物理)
变形(气象学)
聚氨酯
分离式霍普金森压力棒
弹性体
结构工程
有限元法
工程类
作者
Zhiying Zhao,Xiaodong Li,Hao Jiang,Xing Su,Xudong Zhang,Meishuai Zou
出处
期刊:Polymers
[Multidisciplinary Digital Publishing Institute]
日期:2023-02-03
卷期号:15 (3): 778-778
被引量:14
标识
DOI:10.3390/polym15030778
摘要
Polyurethane microcellular elastomers (PUME) are good at impact protection and energy absorption, and belong to rate sensitive- and strain history-dependent materials. In this study, PUME with different densities of 800 kg/m3, 600 kg/m3 and 400 kg/m3 were prepared, then the compressive responses of PUME in the strain rate range of 0.001 s-1 to 3400 s-1 were systemically investigated. By studying the energy absorption and efficiency diagram of PUME, the compressive properties of materials with different densities under compressive impact load were described, which showed that PUME with a density of 600 kg/m3 had better performance. A visco-hyperelasticity-air constitutive model was established to describe the large deformation response of PUME at high strain rates. The model included three components: hyperelastic part, viscoelastic part and gas pressure part. Quasi-static and dynamic compression tests were used to determine the constitutive relations of seven parameters. The samples with a density of 600 kg/m3 at different strain rates were fitted by MATLAB software, and the constitutive model parameters were obtained. The comparison between the constitutive equation and the experimental results showed that there was a good consistency. The constitutive model can provide data support for simulation analysis and application of PUME as energy absorbing protective facilities.
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