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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Mechanical endurance of polymer electrolyte membrane and PEM fuel cell durability
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Mechanical endurance of polymer electrolyte membrane and PEM fuel cell durability

机译:高分子电解质膜的机械耐久性和PEM燃料电池的耐久性

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The life of proton exchange membrane fuel cells (PEMFC) is currently limited by the mechanical endurance of polymer electrolyte membranes and membrane electrode assemblies (MEAs). In this paper, the authors report recent experimental and modeling work toward understanding the mechanisms of delayed mechanical failures of polymer electrolyte membranes and MEAs under relevant PEMFC operating conditions. Mechanical breach of membranes/MEAs in the form of pinholes and tears has been frequently observed after long-term or accelerated testing of PEMFC cells/stacks. Catastrophic failure of cell/stack due to rapid gas crossover shortly follows the mechanical breach. Ex situ mechanical characterizations were performed on MEAs after being subjected to the accelerated chemical aging and relative humidity (RH) cycling tests. The results showed significant reduction of MEA ductility manifested as drastically reduced strain-to-failure of the chemically aged and RH-cycled MEAs. Postmortem analysis revealed the formation and growth of mechanical defects such as cracks and crazing in the membranes and MEAs. A finite element model was used to estimate stress/strain states of an edge-constrained MEA under rapid RH variations. Damage metrics for accelerated testing and life prediction of PEMFCs are discussed. (c) 2006 Wiley Periodicals, Inc.
机译:质子交换膜燃料电池(PEMFC)的寿命目前受到聚合物电解质膜和膜电极组件(MEA)的机械耐久性的限制。在本文中,作者报告了最近的实验和建模工作,旨在了解在相关的PEMFC操作条件下聚合物电解质膜和MEA的延迟机械故障的机理。在对PEMFC电池/电池组进行长期或加速测试后,经常观察到以针孔和撕裂形式出现的膜/ MEA机械断裂。机械破裂后不久,由于气体快速交换而导致的电池/电池堆灾难性故障。在经受加速的化学老化和相对湿度(RH)循环测试之后,对MEA进行了异位机械表征。结果表明,MEA延展性显着降低,表现为化学老化和RH循环MEA的应变失效大大降低。事后分析揭示了机械缺陷的形成和增长,例如膜和MEA中的裂缝和裂纹。使用有限元模型来估计在快速RH变化下边缘受约束的MEA的应力/应变状态。讨论了加速测试和预测PEMFC的损伤指标。 (c)2006年Wiley Periodicals,Inc.

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