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Correlation Between Local Temperature and Degradations in Polymer Electrolyte Membrane Fuel Cells

机译:聚合物电解质膜燃料电池局部温度与降解的相关性

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In Proton Exchange Membrane Fuel Cells, local temperature is a driving force for many degradation mechanisms such as hygrothermal deformation, creep, platinum dissolution, and bipolar plates corrosion. In order to investigate and quantify those effects, durability testing in automotive operating conditions is conducted in this work. During the ageing tests, the local performance and temperature are investigated using in-situ measurements of a printed circuit board. At the end of life, postmortem analysis of the aged components is conducted in order to investigate their local microstructure and chemical composition. It is observed that hot zones don't show significant performance losses despite the advanced mechanical degradation observed in post-mortem analysis. Heat and water transport directly impact the hygrothermal stresses in the membrane which can induce local failure even without gradual performance loss. Furthermore, humidity and temperature are responsible for bipolar plates corrosion acceleration and evaporation phenomena induce local fouling in the cell.
机译:在质子交换膜燃料电池中,局部温度是许多降解机制的驱动力,例如湿热变形,蠕变,铂溶解和双极板腐蚀。为了调查和量化这些效果,在这项工作中进行了汽车操作条件中的耐用性测试。在老化测试期间,使用印刷电路板的原位测量来研究局部性能和温度。在寿命结束时,进行了老化组分的后期分析,以研究其局部微观结构和化学组成。尽管在验尸后分析中观察到,但热区不会显示出显着的性能损失。热量和水运输直接影响膜中的湿热应力,即使没有逐渐性的性能损失,也可以诱导局部失效。此外,湿度和温度负责双极板腐蚀加速度和蒸发现象诱导细胞中的局部污染。

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