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Constitutive modeling of isotropic hyperelastic materials using proposed phenomenological models in terms of strain invariants

机译:使用应变现象的拟议现象学模型对各向同性超弹性材料进行本构建模

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Rubber-like materials deform largely and nonlinearly under loading and preserve their initial configuration after removal of the load. These materials are usually modeled as being homogeneous, isotropic, and incompressible elastic solids that are supported by experimental data. In this article, a general form for the strain energy density of these materials is assumed as the sum of two independent functions of the first and second strain invariants. Applying the essential requirements on the form of the strain energy density, the mathematical form of these functions is obtained as polynomial, logarithmic, and exponential. Then a general form is derived for the strain energy density of compressible materials and its effectiveness is evaluated for hydrostatic compression and uniaxial tension tests. The determination of material parameters and the evaluation of effectiveness of models are done based on the correlation between the values of the strain energy density (rather than the stresses) cast from the theory and the test data. Comparison of the theoretical predictions with the experimental data indicates that the represented models can achieve a satisfactory agreement with the behavior of different materials. POLYM. ENG. SCI., 56:299-308, 2016. (c) 2015 Society of Plastics Engineers
机译:橡胶状材料在负载下会发生很大程度的非线性变形,并在去除负载后保持其初始配置。这些材料通常被建模为均质,各向同性和不可压缩的弹性固体,并得到实验数据的支持。在本文中,将这些材料的应变能密度的一般形式假定为第一和第二应变不变量的两个独立函数的和。将基本要求应用于应变能密度的形式,可以以多项式,对数和指数形式获得这些函数的数学形式。然后导出可压缩材料的应变能密度的一般形式,并对其静液压和单轴拉伸试验的有效性进行评估。材料参数的确定和模型有效性的评估是基于从理论得出的应变能密度值(而不是应力)与测试数据之间的相关性进行的。理论预测值与实验数据的比较表明,所表示的模型可以与不同材料的行为取得令人满意的一致性。 POLYM。 ENG。 SCI。,56:299-308,2016.(c)2015年塑料工程师学会

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