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Mechanisms of the Complex Thermo-Mechanical Behavior of Polymer Glass Across a Wide Range of Temperature Variations

机译:宽温度变化范围内聚合物玻璃的复杂热机械行为机理

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摘要

This paper aims to explore the mechanisms of the complex thermo-mechanical behavior of polymer glass across a wide range of temperature variations. To this end, the free vibration frequency spectrum of simply supported poly(methyl methacrylate) (PMMA) beams was thoroughly investigated with the aid of the impulse excitation technique. It was found that the amplitude ratio of the multiple peaks in the frequency spectrum is a strongly dependent on temperature, and that the peaks correspond to the multiple vibrational modes of the molecular network of PMMA. At a low temperature, the vibration is dominated by the overall microstructure of PMMA. With increasing the temperature, however, the contribution of the sub-microstructures is retarded by β relaxation. Above 80 °C, the vibration is fully dominated by the microstructure after relaxation. The relaxation time at the transition temperature is of the same order of the vibration period, confirming the contribution of β relaxation. These findings provide a precise method for establishing reliable physical-based constitutive models of polymer glass.
机译:本文旨在探讨在宽范围的温度变化下聚合物玻璃复杂的热机械行为机理。为此,借助脉冲激励技术,对简单支撑的聚甲基丙烯酸甲酯(PMMA)梁的自由振动频谱进行了彻底研究。发现频谱中多个峰的振幅比强烈依赖于温度,并且峰对应于PMMA分子网络的多个振动模式。在低温下,振动主要由PMMA的整体微观结构决定。但是,随着温度的升高,亚微观结构的贡献因β弛豫而受到阻碍。高于80°C时,振动在松弛后完全由微观结构决定。转变温度下的弛豫时间与振动周期的数量级相同,证实了β弛豫的作用。这些发现为建立可靠的基于物理的聚合物玻璃本构模型提供了一种精确的方法。

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