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Investigation of Locally Resolved Current Density Distribution of Segmented PEM Fuel Cells to Detect Malfunctions

机译:分段PEM燃料电池局部解析电流密度分布检测故障的研究

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With the aid of PCB technology, current density distribution could be achieved by measuring the local current density inside the fuel cell, which would be more precisely reflecting the local electrochemical reaction. An important application of segmented cell technology was used for in-situ error detection of the evolution of membrane leakage. From the evolution of current density distributions, starting locations of membrane leakages and their spreading could be detected. The effect of operation conditions could be found: the steeply decreased pressure and the fast cooling of the local membrane was the main reason for the degradation of the membrane. It caused large temperature gradient in different local membranes, which resulted in inhomogeneous current density distribution and mechanical strain and stress. With the aid of segmented cell, malfunction could be detected at an early stage and thereby catastrophic failure of the whole stack may be avoided.
机译:借助PCB技术,通过测量燃料电池内部的局部电流密度,可以实现电流密度分布,这将更精确地反映局部电化学反应。分段细胞技术的重要应用用于原位误差检测膜泄漏的演变。从电流密度分布的演变,可以检测膜泄漏的起始位置及其扩散。可以找到操作条件的影响:局部膜的急剧降低和局部膜的快速冷却是膜降解的主要原因。它在不同局部膜中引起了大的温度梯度,从而导致非均匀的电流密度分布和机械应变和应力。借助分段细胞,可以在早期阶段检测故障,从而可以避免整个堆叠的灾难性失败。

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