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Through-Plane Gas Permeability of Proton Exchange Membrane Fuel Cell Gas Diffusion Layers

机译:质子交换膜燃料电池气体扩散层的贯穿平面气体渗透性

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Effects of mechanical compression and PTFE content on the through-plane gas permeability of gas diffusion layers (GDLs) of PEM fuel cells are investigated both experimentally and theoretically. A new test bed is designed and built which allows pressure drop and air flow rate measurement for various fibrous samples. The measured values are used to calculate the through-plane permeability. Various GDLs are obtained and tested over a wide range of PTFE content and compression ratio. The experimental data shows a reverse relationship between the through-plane permeability and both PTFE content and mechanical compression. An existing model for through-plane permeability of planar structures is revisited to develop a model that accommodates effects of PTFE content and GDL compression. The proposed model captures the trends of the experimental data for through-plane permeability, measured in the present study or reported by others.
机译:在实验和理论上,在PEM燃料电池的气体扩散层(GDLS)的贯穿平面气体渗透率上的影响在实验和理论上研究了机械压缩和PTFE含量。设计并构建了一个新的试验台,其允许对各种纤维样品进行压降和空气流量测量。测量值用于计算贯通平面渗透率。获得各种GDL并在各种PTFE含量和压缩比上进行测试。实验数据显示通过平面渗透率和PTFE含量与机械压缩之间的反向关系。重新讨论平面结构的平面渗透性的现有模型,开发一种适应PTFE含量和GDL压缩的效果的模型。所提出的模型捕获在本研究中测量的通过平面渗透性的实验数据的趋势,或者其他人报告。

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