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Quantitative relation between the relaxation time and the strain rate for polymeric solids under quasi-static conditions

机译:准静态条件下聚合物固体的弛豫时间与应变率之间的定量关系

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摘要

Relaxation time is an essential physical quantity reflecting the hysteresis of the microstructure of materials. To associate the relaxation time with the strain rate, the stress-strain curves of six types of polymers at low strain rate were normalized, and a nondimensional generalized Maxwell model incorporating strain-rate-dependent relaxation times was obtained by the internal variable theory of irreversible thermodynamics. The results indicate that the constitutive equation may capture well the normalized stress-strain behaviors that are not related to the strain rate. The ratio of the initial modulus to the secant modulus at the maximum stress was also found to not rely on the strain rate anymore. Furthermore, strain-rate independence occurred only when the relaxation time was proportional to the time interval for stress from zero to the maximum stress. The relaxation time varied in a power law with the strain rate. The explicit relation is helpful for providing a concise and promising solution for predicting the quasi-static mechanical response of viscoelastic solids. (c) 2016 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2016, 133, 44114.
机译:弛豫时间是反映材料微观结构滞后的基本物理量。为了将松弛时间与应变速率相关联,对六种类型的低应变速率聚合物的应力-应变曲线进行了归一化,并通过不可逆的内部变量理论获得了包含应变速率相关松弛时间的无量纲广义Maxwell模型。热力学。结果表明,本构方程可以很好地捕获与应变率无关的归一化应力-应变行为。还发现最大应力下的初始模量与正割模量之比不再依赖于应变速率。此外,仅当松弛时间与应力从零到最大应力的时间间隔成比例时,才发生应变率独立性。弛豫时间根据幂率随应变率而变化。明确的关系有助于为预测粘弹性固体的准静态机械响应提供简洁而有希望的解决方案。 (c)2016 Wiley Periodicals,Inc. J. Appl。 Polym。科学2016,133,44114。

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