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The Role of Viscoelasticity in the Mechanical Modelling of Rubbers

机译:粘弹性在橡胶机械建模中的作用

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Bipolar plates (BPPs) are the main component in proton exchange membrane fuel cells. In the last years, different manufacturing processes have been proposed as alternative to the traditional graphite BPPs, including the manufacture of thin stamped BPPs using the rubber pad forming process. In this context, the numerical simulation of the forming process is used to optimize of the process parameters. Thus, in addition to the modelling of the elastoplastic behavior of the metallic sheet, it is also necessary to describe the hyper-viscoelastic behavior of the rubber pad. The main objective of this study is to evaluate the importance of the viscous effect on the global behavior of two different polyurethanes, since the modelling of the viscoelastic behavior is significantly more complex than the hyperelastic one. Uniaxial compression and stress relaxation tests are carried out both experimentally and numerically, considering three loading/unloading velocities. The hyperelastic behavior is described by the Mooney-Rivlin model, while the viscoelasticity is modelled by a series of Maxwell elements. The results show that the viscous effect can be neglected in the numerical modelling of the rubber pad forming, if the rubber hardness value is low.
机译:双极板(BPP)是质子交换膜燃料电池中的主要成分。在过去几年中,已经提出了不同的制造过程作为传统石墨BPP的替代品,包括使用橡胶垫形成过程制造薄冲压BPP。在这种情况下,形成过程的数值模拟用于优化过程参数。因此,除了金属片的弹性塑料行为的建模之外,还需要描述橡胶垫的超粘弹性行为。本研究的主要目的是评估粘性效果对两种不同聚氨酯的全局行为的重要性,因为粘弹性行为的建模比超弹性更复杂。在考虑三个装载/卸载速度的情况下,在实验和数值上进行单轴压缩和应力松弛测试。 Mooney-Rivlin模型描述了高速行为,而粘弹性由一系列麦克斯韦元素进行建模。结果表明,如果橡胶硬度值低,则可以在橡胶垫的数值模型中忽略粘性效果。

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