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Hyperelastic Nonlinear Thermal Constitutive Equation of Vulcanized Natural Rubber

机译:硫化天然橡胶的超速度非线性热组成方程

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Based on the tensor function, the nonlinear thermal constitutive equation and the corresponding strain energy function of hyperelastic isotropic materials are derived. The equation and the strain energy function are complete and irreducible, They contain 38 independent elastic constants and satisfy the tensor function representation theorem. The constitutive relation of rubber as a typical superelastic incompressible material is studied, The constitutive equation of thermal stress and the corresponding strain energy function of rubber are derived. 28 complete and irreducible elastic constants of rubber are determined. The stress-strain curves of vulcanized rubber at different temperatures (-50, -25, 0, 25, 75, 100°C) were calculated under static uniaxial loading. The above conclusions and L.R.G. experimental data were fitted by multivariate nonlinear regression. The elastic constants of natural rubber vulcanized at 0°C, and the specific values of thermoelastic constants. It provides important methods and data for further study of thermal sensitivity of rubber. By fitting the experimental data of vulcanized natural rubber, the constitutive equation can effectively describe the mechanical behavior of vulcanized natural rubber at different temperatures. The calculation process is simple and clear.
机译:基于张量函数,推导出非线性各向同性材料的非线性热组成方程和相应的应变能功能。等式和应变能功能是完整的和不可挽回的,它们含有38个独立的弹性常数并满足张量函数表示定理。研究了橡胶作为典型超弹性不可压缩材料的本构关系,得到了热应力的本构体方程和橡胶的相应应变能功能。 28确定橡胶的完整和不可氧化的弹性常数。在静态单轴载荷下计算不同温度(-50,-25,0,25,75,100℃)的硫化橡胶的应力 - 应变曲线。上述结论和L.R.G.G.通过多变量非线性回归拟合实验数据。天然橡胶的弹性常数在0℃下硫化,以及热弹性常数的特定值。它提供了重要的方法和数据,以进一步研究橡胶的热敏感性。通过拟合硫化天然橡胶的实验数据,本构方程可以有效地描述硫化天然橡胶在不同温度下的力学行为。计算过程简单明了。

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