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VIBROCREEP AND CYCLIC DAMAGE OF POLYMERS

机译:聚合物的振动蠕变和循环损伤

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摘要

The paper concerns the time-dependent response of polymer systems subjected to superimposed static and cyclic loads. An overview of recent experimental results regarding the cyclic creep response of two polymers, Nylon 6/6 and polyvinylidene fluoride (PVDF) is presented. It is shown that both materials have demonstrated accelerated creep rates due to cyclic loading effects. This phenomenon, defined as "vibrocreep", is essentially nonlinear, since the material response under combined static and cyclic loads does not represent a simple superposition of the responses to static and fully reversed cyclic loads applied separately. Further, a nonlinear constitutive model, describing the interaction between creep and cyclic damage evolution in polymers is formulated. This constitutive model combines the concepts of linear viscoelastic theory of hereditary type with damage characterization using a damage function. It is shown that the damage function depends on the number of loading cycles and can be determined experimentally. In the paper, experimental results validating the developed constitutive model are presented.
机译:本文涉及在静态和循环载荷叠加作用下聚合物系统的时间依赖性响应。介绍了有关两种聚合物(尼龙6/6和聚偏二氟乙烯(PVDF))的循环蠕变响应的最新实验结果的概述。结果表明,两种材料都表现出由于循环载荷效应而加速的蠕变速率。这种现象被定义为“振动蠕变”,基本上是非线性的,因为在静态和循环载荷共同作用下的材料响应并不代表对单独施加的静态和完全反向循环载荷的响应的简单叠加。此外,制定了一个非线性本构模型,描述了聚合物中蠕变与循环损伤演化之间的相互作用。本构模型将遗传性线性粘弹性理论的概念与使用损伤函数的损伤特征相结合。结果表明,损伤函数取决于加载循环的次数,可以通过实验确定。在本文中,提出了验证开发的本构模型的实验结果。

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