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Effect of Terminal Design and Bipolar Plate Material on PEM Fuel Cell Performance

机译:端子设计和双极板材料对PEM燃料电池性能的影响

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Bipolar plates perform as current conductors between cells, provide conduits for reactant gases, facilitate water and thermal management through the cells, and constitute the backbone of a fuel cell stack. Currently, commercial bipolar plates are made of graphite composite because of its relatively low interfacial contact resistance (ICR) and high corrosion resistance. However, graphite composite’s manufacturability, permeability, and durability of shock and vibration are unfavorable in comparison to metals. Therefore, metals have been considered as a replacement material for graphite composite bipolar plates. The main objective of this study is to evaluate the effect of terminal connection design and bipolar plate material on PEM fuel cell overall performance. The study has indicated that single cell performance can be improved by combining terminals into metallic bipolar plates. This terminal design reduces the internal cell resistance and eliminates the need for additional terminal plates. The improved single cell performance by 18% and the increased savings in hydrogen consumption by 15% at the current density of 0.30 A/cm2 was attributed to the robust metal to metal contact between the terminal and the metallic bipolar plates. However, connecting metal terminal directly into graphite bipolar plates did not exhibit similar improvement in the performance of graphite fuel cells because of their brittleness that could have caused damage in the plates and poor contacts.
机译:双极板充当电池之间的电流导体,为反应气体提供导管,促进通过电池的水和热管理,并构成燃料电池堆的骨架。目前,由于其相对较低的界面接触电阻(ICR)和较高的耐腐蚀性,所以商用双极板由石墨复合材料制成。但是,与金属相比,石墨复合材料的可制造性,渗透性以及冲击和振动的耐久性均不佳。因此,金属已经被认为是石墨复合双极板的替代材料。这项研究的主要目的是评估端子连接设计和双极板材料对PEM燃料电池整体性能的影响。研究表明,通过将端子组合成金属双极板可以改善单电池性能。这种端子设计降低了内部电池电阻,并且无需额外的端子板。在0.30 A / cm2的电流密度下,单电池性能提高了18%,氢气消耗节省了15%,这归因于端子与金属双极板之间牢固的金属接触。但是,将金属端子直接连接到石墨双极板中,由于其脆性可能会导致板的损坏和接触不良,因此在石墨燃料电池的性能上没有表现出类似的改善。

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