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The role of anelasticity in high stress mechanical response and physical properties of glassy polymers

机译:无弹性在玻璃态聚合物高应力机械响应和物理性质中的作用

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Non-elastic deformation of amorphous polymers is studied from strain recovery tests. In particular, a strain recovery master curve is built. It allows one to estimate recovery times necessary to recover the whole non-elastic deformation. On such a curve, two non-elastic deformations, namely anelastic (nonlinear) and plastic deformations, are distinguished by their range of recovery times. The evolution of these two components is followed during a constant strain rate test. This clearly shows the importance of the anelastic deformation for the understanding of the nonlinear response of glassy polymers. Moreover, the structural modifications induced by non-elastic strain of glassy polymers were studied by mechanical spectroscopy, differential scanning calorimetry and density measurements. These modifications appear to result from the anelastic part of the strain. Lastly, a consistent description of the mechanical response of amorphous solid polymers, and subsequent recovery processes, is proposed. The polymers tested were poly(methyl methacrylate), atactic polystyrene, and polycarbonate.
机译:通过应变恢复测试研究了非晶态聚合物的非弹性变形。特别地,建立应变恢复主曲线。它允许人们估计恢复整个非弹性变形所需的恢复时间。在这样的曲线上,两种非弹性变形,即非弹性变形(非线性)和塑性变形,通过其恢复时间范围来区分。在恒定应变率测试期间,将跟踪这两个分量的演变。这清楚地表明了非弹性变形对于理解玻璃态聚合物的非线性响应的重要性。此外,通过机械光谱,差示扫描量热法和密度测量研究了玻璃态聚合物的非弹性应变引起的结构改性。这些变化似乎是由应变的无弹性部分引起的。最后,提出了对无定形固体聚合物的机械响应以及随后的回收方法的一致描述。测试的聚合物是聚(甲基丙烯酸甲酯),无规聚苯乙烯和聚碳酸酯。

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