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Chromium Nitrided A283-C Steel as Bipolar Plate for PEMFC

机译:铬氮化A283-C钢作为PEMFC双极板

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Bipolar plate of stack in polymer electrolyte membrane fuel cell (PEMFC) has high cost and heavy weight. In this study, low carbon steel was used as a base metal of bipolar plate for the lower cost than stainless steels, which are widely researched as bipolar plate. Low carbon steel has not a good corrosion resistance. In order to improve the corrosion resistance and electrolytic conductivity, low carbon Steel needs to be surface modified. We made chromium electroplated layer of 5 μm and 10 μm thickness on the surface of low carbon steel, and it was thermally mtrided for 3hours at 1173K in a furnace with 50torr nitrogen gas pressure. Cross-section and surface microstructures of surface treated low carbon steel were investigated using OM and SEM. Also crystal structures are observed by XRD. Interfacial contact resistance and corrosion test were considered to simulate the internal operating conditions of PEMFC stack. The corrosion test was performed in 0.1N H_2SO_4 + 2ppm F~- solution at 80 °C. The results show that the surface modified steel plates have good corrosion resistance and relatively low interfacial contact resistance, and it should be candidate material as a bipolar plate of PEMFC.
机译:在聚合物电解质膜燃料电池(PEMFC)中的双极板具有高成本和重量。在该研究中,低碳钢用作双极板的基础金属,其成本低于不锈钢,其广泛研究为双极板。低碳钢没有良好的耐腐蚀性。为了提高耐腐蚀性和电解电导率,需要表面改性低碳钢。我们在低碳钢表面制成5μm和10μm厚度的铬电镀层,在具有50托氮气压力的炉中在1173K中热摩托3小时。使用OM和SEM研究了表面处理的低碳钢的横截面和表面微观结构。还通过XRD观察到晶体结构。界面接触电阻和腐蚀试验被认为模拟PEMFC堆栈的内部操作条件。在80℃下在0.1N H_2SO_4 + 2PPM F〜溶液中进行腐蚀试验。结果表明,表面改性钢板具有良好的耐腐蚀性和相对低的界面接触电阻,它应该是作为PEMFC双极板的候选材料。

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