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Effects of physical aging on long-term creep of polymers and polymer matrix composites

机译:物理老化对聚合物和聚合物基复合材料长期蠕变的影响

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摘要

For many polymeric materials in use below the glass transition temperature, the long term viscoelastic behavior is greatly affected by physical aging. To use polymer matrix composites as critical structural components in existing and novel technological applications, this long term behavior of the material system must be understood. Towards that end, this study applied the concepts governing the mechanics of physical aging in a consistent manner to the study of laminated composite systems. Even in fiber-dominated lay-ups the effects of physical aging are found to be important in the long-term behavior of the composite. The basic concepts describing physical aging of polymers are discussed. Several aspects of physical aging which have not been previously documented are also explored in this study, namely the effects of aging into equilibrium and a relationship to the time-temperature shift factor. The physical aging theory is then extended to develop the long-term compliance/modulus of a single lamina with varying fiber orientation. The latter is then built into classical lamination theory to predict long-time response of general oriented lamina and laminates. It is illustrated that the long term response can be counterintuitive, stressing the need for consistent modeling efforts to make long term predictions of laminates to be used in structural situations.
机译:对于在低于玻璃化转变温度下使用的许多聚合物材料而言,长期的粘弹性行为受到物理老化的极大影响。为了在现有的和新颖的技术应用中将聚合物基复合材料用作关键的结构组件,必须了解材料系统的这种长期行为。为此,本研究以一致的方式将控制物理老化力学的概念应用于层压复合材料体系的研究。即使在纤维为主的叠层中,物理老化的影响也被发现对复合材料的长期性能很重要。讨论了描述聚合物物理老化的基本概念。在这项研究中,还探索了以前未记录的物理老化的几个方面,即老化达到平衡的影响以及与时间-温度漂移因子的关系。然后扩展物理老化理论,以开发具有不同纤维取向的单层板的长期柔度/模量。然后将后者构建到经典层压理论中,以预测一般取向的薄片和层压板的长期响应。说明了长期响应可能是违反直觉的,从而强调了需要进行一致的建模工作才能对结构情况下使用的层压板进行长期预测。

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