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Dynamical heterogeneities and mechanical non-linearities: Modeling the onset of plasticity in polymer in the glass transition

机译:动态异质性和机械非线性:在玻璃过渡中的聚合物中的塑性作用建模

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摘要

In this paper we focus on the role of dynamical heterogeneities on the non-linear response of polymers in the glass transition domain. We start from a simple coarse-grained model that assumes a random distribution of the initial local relaxation times and that quantitatively describes the linear viscoelasticity of a polymer in the glass transition regime. We extend this model to non-linear mechanics assuming a local Eyring stress dependence of the relaxation times. Implementing the model in a finite element mechanics code, we derive the mechanical properties and the local mechanical fields at the beginning of the non-linear regime. The model predicts a narrowing of distribution of relaxation times and the storage of a part of the mechanical energy -internal stress- transferred to the material during stretching in this temperature range. We show that the stress field is not spatially correlated under and after loading and follows a Gaussian distribution. In addition the strain field exhibits shear bands, but the strain distribution is narrow. Hence, most of the mechanical quantities can be calculated analytically, in a very good approximation, with the simple assumption that the strain rate is constant.
机译:在本文中,我们专注于动态异质性对玻璃过渡结构域中聚合物的非线性响应的作用。我们从一个简单的粗粒模型开始,该模型假设初始局部弛豫时间的随机分布,并且定量地描述了玻璃过渡方案中的聚合物的线性粘弹性。假设局部喉部应力依赖放松时间,我们将该模型扩展到非线性机制。在有限元力学代码中实现模型,我们在非线性方案开始时导出机械性能和本地机械领域。该模型预测弛豫时间分布的缩小,以及在该温度范围内拉伸期间将其压应力 - 在材料中传递到材料的一部分的储存。我们表明压力场在装载下并在加载和后遵循高斯分布之后的情况下不相关。此外,应变场表现出剪切带,但应变分布窄。因此,大多数机械量可以在非常好的近似下分析地计算,以应变率恒定的简单假设。

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    PSL Res Univ CNRS UPMC ESPCI ParisTech Lab SIMM UMR 7615 F-75231 Paris France;

    PSL Res Univ CNRS UPMC ESPCI ParisTech Lab SIMM UMR 7615 F-75231 Paris France;

    PSL Res Univ CNRS UPMC ESPCI ParisTech Lab SIMM UMR 7615 F-75231 Paris France;

    PSL Res Univ MINES ParisTech MAT Ctr Mat CNRS UMR 7633 BP 87 F-91003 Evry France;

    PSL Res Univ CNRS UPMC ESPCI ParisTech Lab SIMM UMR 7615 F-75231 Paris France;

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  • 正文语种 eng
  • 中图分类 物理学;
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