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APS -APS March Meeting 2017 - Event - Elastic yielding of melt-stretched glassy polymers below glass transition temperature

机译:APS -APS 3月举行2017年 - 事件 - 熔化拉伸玻璃聚合物的弹性产量低于玻璃化转变温度

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We have recently shown how effects of melt deformation on mechanical behavior of glassy polymers may be understood in terms of a molecular model [1], which can explain why melt-stretched polystyrene becomes completely ductile at room temperature. In our further investigation along this line, we uncovered a phenomenon that appears unknown in the literature. Mechanical tests reveal that melt-deformed PS and PMMA exhibit a sizable elastic retractive stress when annealed at temperatures that are still significantly below their glass transition temperatures. This work systematically investigates how characteristics of this elastic yielding, e.g., induction time and magnitude of the tensile stress, change as a function of the temperature at which melt stretching is carried out, the degree of melt stretching, the annealing temperature, composition of the glassy polymers, and aging history. [1]Wang, S. Q., Cheng, S., Lin, P., {&} Li, X. (2014). A phenomenological molecular model for yielding and brittle-ductile transition of polymer glasses.The Journal of chemical physics,~141(9), 094905..
机译:我们最近显示了熔体变形对玻璃状聚合物的力学行为的效果可以理解,分子模型[1]可以理解,这可以解释为什么熔化拉伸的聚苯乙烯在室温下完全延展。在我们沿着这条线的进一步调查中,我们发现了一种在文献中似乎未知的现象。机械测试揭示了熔化变形的PS和PMMA在在仍然明显低于其玻璃化转变温度的温度下退火时表现出相当大的弹性逆变应力。这项工作系统地研究了这种弹性屈服的特征,例如抗拉应力的诱导时间和大小,随着熔体拉伸的温度而变化,熔体拉伸程度,退火温度,组成的函数玻璃聚合物和老化历史。 [1]王,S. Q.,Cheng,S.,Lin,P.,{&} Li,X.(2014)。高分子体玻璃屈服和脆性延性过渡的现象学分子模型。化学物理杂志,〜141(9),094905 ..

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