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Stacks with TiN/titanium as the bipolar plate for PEMFCs

机译:TiN /钛作为PEMFC的双极板的叠层

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摘要

Proton exchange membrane fuel cell (PEMFC) is a potential alternative for the internal combustion engine. But many problems, such as metallic bipolar plate instead of graphite bipolar plate to decrease the cost, should be solved before its application. Based on the previous results that single cell with TiN/Ti as bipolar plates shows high performance and enough long-time durability, the progress on the stacks with TiN/Ti as bipolar plates is reported in this manuscript. Till now seldom report is focused on stacks because of the complicated processing technique, especially for that with TiN/Ti as bipolar plate. The flow field in the plate is punched from titanium deformation, and two plates are welded by laser welding to form one piece of bipolar plate. The adopted processing techniques for stacks with TiN/Ti as bipolar plate exhibit advantage and feasibility in industry. The power density by weight for the stack is as high as 1353 W kg~(-1), although it still has space to be improved. Next work should be focused on the design of flow channel parameters and flow field type based on plastic deformation of metal materials.
机译:质子交换膜燃料电池(PEMFC)是内燃机的潜在替代品。但是,在应用之前应解决许多问题,例如金属双极板代替石墨双极板以降低成本。基于先前的结果,以TiN / Ti为双极板的单电池显示出高性能和足够的长期耐用性,本文报道了以TiN / Ti作为双极板的电池组的进展。到目前为止,由于复杂的加工技术,尤其是以TiN / Ti为双极板的加工技术,很少有报道将重点放在堆叠上。板的流场从钛的变形中冲出,然后通过激光焊接将两块板焊接在一起,从而形成一块双极板。 TiN / Ti作为双极板的叠层所采用的加工技术在工业上具有优势和可行性。电池堆的重量功率密度高达1353 W kg〜(-1),尽管仍有改进的空间。接下来的工作应集中在基于金属材料塑性变形的流道参数和流场类型的设计上。

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