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首页> 外文期刊>International journal of non-linear mechanics >A constitutive model for the Mullins effect with changes in material symmetry
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A constitutive model for the Mullins effect with changes in material symmetry

机译:材料对称性变化的穆林斯效应本构模型

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When an unfilled or particle reinforced rubber is subjected to cyclic loading-unloading with a fixed amplitude from its natural reference configuration, the stress required on reloading is less than on the initial loading for a deformation up to the maximum value of the stretches achieved. The stress differences in successive loading cycles are largest during the first and second cycles and become negligible after about 4-6 cycles. This phenomenon is known as the Mullins effect. In this paper new experimental data are reported showing the change in material symmetry for an initially undamaged and isotropic material subjected to uniaxial and biaxial extension tests. The effect of preconditioning in one direction on the mechanical response when loaded in a perpendicular direction is discussed. A simple phenomenological model is derived to account for stress softening and changes in material symmetry. The formulation is based on the theory of pseudo-elasticity, the basis of which is the inclusion of scalar variables in the energy function. When active, these variables modify the form of the energy function during the deformation process and therefore change the material response. The general formulation is specialized to pure homogeneous deformation in order to fit the new data. The numerical results are in very good agreement with the experimental data.
机译:当未填充的或颗粒增强的橡胶从其自然参考构型以固定振幅进行循环加载/卸载时,重新加载所需的应力小于初始加载所需的应力,以使变形达到所达到的最大拉伸值。连续加载循环中的应力差异在第一和第二循环中最大,在大约4-6个循环后可以忽略不计。这种现象被称为穆林斯效应。在本文中,报告了新的实验数据,这些数据显示了经过单轴和双轴拉伸测试的最初未损坏且各向同性的材料的材料对称性变化。讨论了在垂直方向上加载时在一个方向上进行预处理对机械响应的影响。推导了一个简单的现象模型来说明应力软化和材料对称性的变化。该公式基于伪弹性理论,其基础是在能量函数中包含标量变量。激活后,这些变量会在变形过程中修改能量函数的形式,从而更改材料响应。通用公式专门用于纯均质变形,以适应新数据。数值结果与实验数据非常吻合。

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