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Elasto-viscoplastic constitutive equations for the description of glassy polymers behavior at constant strain rate

机译:用于描述玻璃纤维聚合物在恒定应变速率下的行为的弹黏塑性本构方程

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摘要

In this study, a modelization of the viscoplastic behavior of amorphous polymers is proposed, from an approach originally developed for metal behavior at high temperature, in which state variable constitutive equations have been modified. A procedure for the identification of model parameters is developed through the use of experimental data from both uniaxial compressive tests extracted from the literature and uniaxial tensile tests performed in this study across a variety of strain rates. The numerical algorithm shows that the predictions of this model well describe qualitatively and quantitatively the intrinsic softening immediately after yielding and the subsequent progressive orientational hardening corresponding to the response of two polymers, amorphous polyethylene terephthalate and rubber toughened polymethyl methacrylate.
机译:在这项研究中,从最初为高温下的金属行为开发的方法中,提出了非晶态聚合物粘塑性行为的模型化方法,其中状态变量本构方程已被修改。通过使用从文献中提取的单轴压缩试验和本研究中在各种应变速率下进行的单轴拉伸试验的实验数据,开发了一种用于识别模型参数的程序。数值算法表明,该模型的预测很好地定性和定量地描述了屈服后立即发生的内在软化以及随后的逐步定向硬化,这与两种聚合物(无定形聚对苯二甲酸乙二醇酯和橡胶增韧的聚甲基丙烯酸甲酯)的响应相对应。

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