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The fabrication of a micro-channel for metallic bipolar plates using a rubber pad forming process

机译:使用橡胶垫形成工艺制造金属双极板的微通道

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A bipolar plate is one the most crucial and costliest of the various components of a proton exchange membrane fuel cell (PEMFC). It is important to reduce the cost of bipolar plate, not only in terms of material, but also in terms of the manufacturing process, to allow the commercialization of PEMFC's. The performance of PEMFC's is also of importance. Metallic bipolar plates have been the subject of much attention recently, because of their low material cost, formability and excellent thermal and mechanical prosperities. Therefore, this study uses a rubber pad forming process for stainless 316L steel to fabricate a bipolar plate with serpentine channels. A computational fluid dynamics (CFD) analysis is performed, in order to determine the influence of channel geometries, such as channel width, channel height and rib width, on the flow distribution of the reactant. Using the CFD results, finite element analysis models are then constructed and the formability of the micro-flow channel is studied. Finality, experiments are conducted to determine the channel height and thickness distribution of the bipolar plate. The numerical results are verified by the experimental results.
机译:双极板是质子交换膜燃料电池(PEMFC)各种组成部分的最重要和最昂贵的。重要的是减少双相板的成本,不仅在材料方面,而且在制造过程方面,允许Pemfc的商业化。 PEMFC的表现也很重要。由于它们的材料成本低,可成型性和优异的热和机械繁荣,金属双极板最近一直受到众多关注的主题。因此,该研究使用不锈钢316L钢的橡胶焊盘形成过程,以制造蛇形通道的双极板。进行计算流体动力学(CFD)分析,以便确定沟道几何形状的影响,例如通道宽度,通道高度和肋宽度,在反应物的流动分布上。使用CFD结果,然后构建有限元分析模型,研究了微流通道的可成形性。结束,进行实验以确定双极板的通道高度和厚度分布。通过实验结果验证数值结果。

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