Compressive Properties and Constitutive Model of Semicrystalline Polyethylene

高密度聚乙烯 材料科学 复合材料 聚乙烯 应变率 结晶度 本构方程 压缩(物理) 产量(工程) 压力(语言学) 超高分子量聚乙烯 软化 结构工程 有限元法 哲学 工程类 语言学
作者
Kebin Zhang,Wenbin Li,Yu Zheng,Wenli Yao,Changfang Zhao
出处
期刊:Polymers [Multidisciplinary Digital Publishing Institute]
卷期号:13 (17): 2895-2895 被引量:5
标识
DOI:10.3390/polym13172895
摘要

The mechanical properties of polyethylene (PE) materials are greatly influenced by their molecular structures, environmental temperature, and strain rate. In this study, static and dynamic compression tests were performed on two semicrystalline PE materials—ultrahigh molecular weight polyethylene (UHMWPE) and high-density polyethylene (HDPE). The stress–strain curves of HDPE and UHMWPE under uniaxial compression at temperatures of −40–120 °C and strain rates of 0.001–5500 s−1 were obtained. The research findings suggest that both the UHMWPE and HDPE showed significant strain rate-strengthening effect and temperature-softening effect. In particular, HDPE exhibited better compression resistance and high-temperature resistance. The relationships between the yield stress and temperature and between the yield stress and strain rate for both materials were fitted, and the Cowper–Symonds constitutive model was built while considering the temperature effect. The parameters of the constitutive model were obtained and input into LS-DYNA software to simulate the dynamic compression process of HDPE. The simulation result was consistent with the test result, validating the accuracy of the constitutive parameters.
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