奥格登
硅橡胶
延伸率
材料科学
复合材料
硅酮
应变能密度函数
超弹性材料
弹性体
拉伤
高分子科学
热力学
物理
极限抗拉强度
内科学
医学
有限元法
作者
Yoshihiro Yamashita,Hideyuki Uematsu,Shuichi Tanoue
出处
期刊:Polymers
[Multidisciplinary Digital Publishing Institute]
日期:2023-05-11
卷期号:15 (10): 2266-2266
被引量:15
标识
DOI:10.3390/polym15102266
摘要
Strain energy density functions are used in CAE analysis of hyperelastic materials such as rubber and elastomers. This function can originally be obtained only by experiments using biaxial deformation, but the difficulty of such experiments has made it almost impossible to put the function to practical use. Furthermore, it has been unclear how to introduce the strain energy density function necessary for CAE analysis from the results of biaxial deformation experiments on rubber. In this study, parameters of the Ogden and Mooney-Rivlin approximations of the strain energy density function were derived from the results of biaxial deformation experiments on silicone rubber, and their validity was verified. These results showed that it is best to determine the coefficients of the approximate equations for the strain energy density function after 10 cycles of repeated elongation of rubber in an equal biaxial deformation state, followed by equal biaxial elongation, uniaxial constrained biaxial elongation, and uniaxial elongation to obtain these three stress-strain curves.
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