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In-situ diagnostic tools for hydrogen transfer leak characterization in PEM fuel cell stacks part Ⅲ: Manufacturing applications

机译:用于PEM燃料电池堆中氢转移泄漏特征的现场诊断工具,第三部分:制造应用

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摘要

This work describes a novel diagnostic technique for detection and isolation of manufacturing defects in polymer electrolyte fuel cell stacks. Two of the main causes of early stack failure are membrane pinholes and electric shorts. Membrane pinholes result in the local hydrogen crossover from anode to cathode, which reduces fuel utilization. With the growth of the pinhole, the crossed over hydrogen exits the cathode as hydrogen emission. When this emission passes the safe lower explosion limit of 4% hydrogen in air, the stack reaches its end of life (EOL). Alternatively, a low resistive point between the anode and cathode results in current flow through the contact point and local heat generation. This could burn the membrane and result in EOL of the fuel cell stack. A diagnostic technique is proposed to detect cells in which membrane pinholes or electric short occur. The technique allows both failure mechanisms to be isolated by means of a straightforward algorithm. The detection of the failure can be used as a pass/fail criterion during fuel cell stack manufacturing, whereas the isolation of the failure modes can be used to inform suitable repair procedures to be performed on the failed stacks.
机译:这项工作描述了一种新颖的诊断技术,用于检测和隔离聚合物电解质燃料电池堆中的制造缺陷。早期堆垛失效的两个主要原因是膜针孔和电气短路。膜针孔会导致氢从阳极到阴极的局部穿越,从而降低燃料利用率。随着针孔的增长,越过的氢以氢发射的方式离开阴极。当此排放物超过空气中4%氢气的安全爆炸下限时,烟囱将达到其使用寿命(EOL)。替代地,阳极和阴极之间的低电阻点导致电流流经接触点并产生局部热量。这可能会燃烧膜并导致燃料电池堆停产。提出了一种诊断技术来检测其中发生膜针孔或电短路的细胞。该技术允许通过简单算法将两种故障机制隔离开。故障的检测可以用作燃料电池堆制造过程中通过/失败的判据,而故障模式的隔离可以用来告知要对发生故障的电池堆进行适当的维修程序。

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