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Theory and identification of a constitutive model of induced anisotropy by the Mullins effect

机译:Mullins效应引起的各向异性本构模型的理论与辨识

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Rubber-like materials present a stress softening phenomenon after a first loading known as the Mullins effect. Some recent experimental data on filled silicone rubber are presented in the literature, using uniaxial and biaxial tests to precondition samples thus induce some primary stress softening. A generic modeling based on the polymer network decomposition into an isotropic hyperelastic one, and a stress-softening evolutive one, is proposed taking into account the contribution of many spatial directions. A new stress softening criterion is built by means of a tensor that measures the repartition of energy in space. A general form of the stress softening function associated to a spatial direction is written by the way of two variables: one, the maximal eigenvalue of the energy tensor; the other, the energy in the considered direction. Finally, a particular form of constitutive equation is proposed. The model is fitted and compared to experimental data. The capacities of such modeling are finally discussed.
机译:橡胶状材料在称为穆林斯效应的首次加载后会出现应力软化现象。文献中介绍了有关填充硅橡胶的一些最新实验数据,使用单轴和双轴测试对样品进行预处理,从而引起一些主应力软化。考虑到许多空间方向的贡献,提出了一种基于聚合物网络分解为各向同性的超弹性模型和应力软化演化模型的通用模型。通过测量空间中能量重新分配的张量,建立了新的应力软化准则。与空间方向相关的应力软化函数的一般形式通过两个变量来表示:一个是能量张量的最大特征值;另一个是能量张量的最大特征值。另一方面,能量在所考虑的方向上。最后,提出了本构方程的一种特殊形式。拟合模型并将其与实验数据进行比较。最后讨论了这种建模的能力。

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