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'The development of a through-plane reactive excitation technique for detection of pinholes in membrane-containing MEA sub-assemblies'

机译:“用于检测含膜的MEA子组件中的针孔的通过平面反应激励技术的开发”

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摘要

As markets for polymer-electrolyte-membrane fuel cells (PEMFC) expand, there continues to be a need for the development and implementation of in-line quality inspection techniques to enable high-volume manufacturing methods for membrane-electrode assemblies (MEAs). These techniques mitigate the potential impact of poor quality on the cost of MEA components by real-time identification of process-induced irregularities, which can result from the manufacturing process or subsequent handling of the material during assembly into a full MEA. A particular type of irregularity known to impact MEA lifetime is loss of membrane integrity, e.g. via a pinhole. In this work, we focus on development of a technique to detect pinholes in membrane-containing MEA sub-assemblies - as opposed to in just the membrane - using a reactive excitation strategy coupled with infrared thermography for detection. A specialized device is introduced and, using various MEA sub-assemblies, is shown to enable detection of pinholes in stationary samples. Multiphysics modeling is utilized to understand and predict the impact of various design and operational parameters of this technique. The feasibility of the technique is demonstrated through both modeling and in-situ results. For example, a detectable (= 1 degrees C) thermal response for a membrane pinhole of approximately 90 gm in diameter is measured in a fraction of a second. The observed detection time is considered to be appropriate for further exploration of the technique in an in-line configuration. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:随着聚合物电解质膜燃料电池(PEMFC)的市场扩展,继续需要开发和实施在线质量检查技术,以实现用于膜电极组件(MEA)的大批量制造方法。这些技术通过实时识别过程引起的不规则现象,减轻了不良质量对MEA组件成本的潜在影响,这种不规则现象可能是由制造过程或随后组装成完整的MEA时对材料的后续处理造成的。已知会影响MEA寿命的一种特殊类型的不规则性是膜完整性的损失,例如通过针孔。在这项工作中,我们专注于开发一种技术,该技术使用反应性激发策略结合红外热成像技术来检测含膜的MEA子组件中的针孔,而不是仅检测膜中的针孔。介绍了一种专用设备,并显示了使用各种MEA子组件的功能,该功能可检测固定样品中的针孔。利用多物理场建模来理解和预测该技术的各种设计和操作参数的影响。通过建模和现场结果都证明了该技术的可行性。例如,在不到几分之一秒的时间内测量了直径约为90 gm的膜针孔的可检测(> = 1摄氏度)热响​​应。观察到的检测时间被认为适合于进一步研究在线配置的技术。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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