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Estimation of contact resistance in proton exchange membrane fuel cells

机译:质子交换膜燃料电池接触电阻的估算

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The contact resistance between the bipolar plate (BPP) and the gas diffusion layer (GDL) is an important factor contributing to the power loss in proton exchange membrane (PEM) fuel cells. At present there is still not a well-developed method to estimate such contact resistance. This paper proposes two effective methods for estimating the contact resistance between the BPP and the GDL based on an experimental contact resistance-pressure constitutive relation. The constitutive relation was obtained by experimentally measuring the contact resistance between the GDL and a flat plate of the same material and processing conditions as the BPP under stated contact pressure. In the first method, which was a simplified prediction, the contact area and contact pressure between the BPP and the GDL were analyzed with a simple geometrical relation and the contact resistance was obtained by the contact resistance-pressure constitutive relation. In the second method, the contact area and contact pressure between the BPP and GDL were analyzed using FEM and the contact resistance was computed for each contact element according to the constitutive relation. The total contact resistance was then calculated by considering all contact elements in parallel. The influence of load distribution on contact resistance was also investigated. Good agreement was demonstrated between experimental results and predictions by both methods. The simplified prediction method provides an efficient approach to estimating the contact resistance in PEM fuel cells. The proposed methods for estimating the contact resistance can be useful in modeling and optimizing the assembly process to improve the performance of PEM fuel cells.
机译:双极板(BPP)和气体扩散层(GDL)之间的接触电阻是导致质子交换膜(PEM)燃料电池功率损耗的重要因素。目前,尚没有一种完善的方法来估算这种接触电阻。本文提出了一种基于实验接触电阻-压力本构关系估算BPP与GDL之间接触电阻的有效方法。本构关系是通过在规定的接触压力下,通过实验测量GDL与具有与BPP相同材料和加工条件的平板之间的接触电阻而获得的。在第一种方法中,这是一种简化的预测方法,它以简单的几何关系分析了BPP与GDL之间的接触面积和接触压力,并通过接触电阻-压力本构关系获得了接触电阻。在第二种方法中,使用FEM分析BPP和GDL之间的接触面积和接触压力,并根据本构关系计算每个接触元件的接触电阻。然后通过考虑所有并联的接触元件来计算总接触电阻。还研究了负载分布对接触电阻的影响。两种方法的实验结果和预测值之间均显示出良好的一致性。简化的预测方法提供了一种有效的方法来估算PEM燃料电池中的接触电阻。所提出的估计接触电阻的方法可用于建模和优化组装过程以改善PEM燃料电池的性能。

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