聚脲
超弹性材料
材料科学
压缩(物理)
反向
极限抗拉强度
拉伸试验
有限元法
本构方程
反问题
张力(地质)
复合材料
结构工程
数学
数学分析
几何学
工程类
涂层
作者
Yihua Xiao,Ziqiang Tang,Xiangfu Hong
出处
期刊:Polymers
[Multidisciplinary Digital Publishing Institute]
日期:2021-07-09
卷期号:13 (14): 2253-2253
被引量:8
标识
DOI:10.3390/polym13142253
摘要
An inverse procedure was proposed to identify the material parameters of polyurea materials. In this procedure, a polynomial hyperelastic model was chosen as the constitutive model. Both uniaxial tension and compression tests were performed for a polyurea. An iterative inverse method was presented to identify parameters for the tensile performance of the polyurea. This method adjusts parameters iteratively to achieve a good agreement between tensile forces from the tension test and its finite element (FE) model. A response surface-based inverse method was presented to identify parameters for the compression performance of the polyurea. This method constructs a radial basis function (RBF)-based response surface model for the error between compressive forces from the compression test and its FE model, and it employs the genetic algorithm to minimize the error. With the use of the two inverse methods, two sets of parameters were obtained. Then, a complete identified uniaxial stress–strain curve for both tensile and compressive deformations was obtained with the two sets of parameters. Fitting this curve with the constitutive equation gave the final material parameters. The present inverse procedure can simplify experimental configurations and consider effects of friction in compression tests. Moreover, it produces material parameters that can appropriately characterize both tensile and compressive behaviors of the polyurea.
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