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Defect Detection in Fuel Cell Gas Diffusion Electrodes Using Infrared Thermography

机译:使用红外热成像燃料电池气体扩散电极缺陷检测

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Polymer Electrolyte Membrane Fuel Cells (PEMFCs) are energy conversion devices that offer high power densities and high efficiencies for mobile and other applications. Successful introduction into the marketplace requires addressing cost barriers such as production volumes and platinum contents. The electrode is currently a cost intensive component within PEMFCs because platinum is employed as the catalyst. For cost reduction, it is vital to maximize efficiency and minimize waste during the manufacturing of electrodes, including gas diffusion electrodes (GDEs), by developing quality control (QC) diagnostics for fuel cell materials that can be applied to the moving material during large scale production. In this work, we report on developing a QC diagnostic for GDEs, involving creating an exothermic reaction on the electrode surface and using infrared (IR) thermography to measure the resulting temperature profile. Experiments with a moving substrate were conducted to demonstrate the applicability of the diagnostic for real-time web-line inspection.
机译:聚合物电解质膜燃料电池(PEMFC)是能量转换装置,为移动和其他应用提供高功率密度和高效率。成功介绍市场需要解决生产量和铂金属障碍等成本障碍。电极目前在PEMFC中的成本密集组分,因为铂用作催化剂。为了降低成本,通过开发可以在大规模施加到移动材料的燃料电池材料的质量控制(QC)诊断,最大限度地提高效率并且在包括气体扩散电极(GDES)期间最小化浪费至关重要。生产。在这项工作中,我们报告了开发GDES的QC诊断,涉及在电极表面上产生放热反应并使用红外(IR)热成像来测量所得到的温度曲线。进行了移动基板的实验,以证明诊断对实时网线检查的适用性。

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