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The absence of physical aging effects on the relaxation of rubbing-induced birefringence in polystyrene

机译:物理老化对聚苯乙烯摩擦引起的双折射弛豫没有影响

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摘要

We found, through extensive experimental studies, that the physical aging effects are absent in the relaxation of rubbing-induced birefringence (RIB) in polystyrene (PS), and the relaxation involves very small length scale. A phenomenological model based on individual birefringence elements is proposed for the RIB relaxation. The relaxation times (RTs) of the elements are found to be independent of the thermal or stress history of the samples, either before or after the formation of the birefringence. The RTs are also independent of the molecular weight, rubbing conditions, and film thickness, while the RTs distribution function does depend on the molecular weight and rubbing conditions. The model provides quantitative interpretations that agree very well with all the reported experimental results, and sheds important light on the novel behaviors of the RIB relaxation. The absence of physical aging effects is probably due to the combined effects of small length scale of the RIB relaxation, and the accelerated aging speed in the near surface region in which the RIB concentrates.
机译:通过广泛的实验研究,我们发现,在聚苯乙烯(PS)中摩擦诱导的双折射(RIB)的弛豫中没有物理老化效应,并且该弛豫涉及非常小的长度尺度。提出了一种基于个体双折射元素的现象学模型来缓解RIB。发现在双折射形成之前或之后,元素的弛豫时间(RTs)与样品的热或应力历程无关。 RTs也与分子量,摩擦条件和膜厚无关,而RTs分布函数的确取决于分子量和摩擦条件。该模型提供了与所有报道的实验结果非常吻合的定量解释,并为RIB弛豫的新颖行为提供了重要的启示。没有物理老化作用可能是由于RIB松弛的小长度尺度和RIB集中的近表面区域加速的老化速度的综合作用。

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