首页> 外文期刊>Electrochimica Acta >Microstructure-property relationships in a gas diffusion layer (GDL) for Polymer Electrolyte Fuel Cells, Part I: effect of compression and anisotropy of dry GDL
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Microstructure-property relationships in a gas diffusion layer (GDL) for Polymer Electrolyte Fuel Cells, Part I: effect of compression and anisotropy of dry GDL

机译:用于聚合物电解质燃料电池的气体扩散层(GDL)中的微观结构性关系,第一部分:干燥GDL的压缩和各向异性的影响

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摘要

New quantitative relationships are established between effective properties (gas diffusivity, permeability and electrical conductivity) for a dry GDL (25 BA) from SGL Carbon with the corresponding microstructure characteristics from 3D analysis. These microstructure characteristics include phase volume fractions, geodesic tortuosity, constrictivity and hydraulic radius. The latter two parameters include information from two different size distribution curves for bulges (continuous PSD) and for bottlenecks (MIP-PSD). X-ray tomographic microscopy is performed for GDL at different compression levels and the micro-macro-relationships are then established for the in-plane and through-plane directions. The predicted properties based on these relationships are compared with numerical transport simulations, which give very similar results and which can be summarized as follows:
机译:从SGL碳的有效性质(气体扩散性,渗透率和电导率和电导率)之间建立了新的定量关系,从SGL碳与3D分析的相应组织特性。 这些微观结构特性包括相体积分数,测地曲折,收缩性和液压半径。 后两个参数包括来自两个不同尺寸分布曲线的信息,用于凸起(连续PSD)和瓶颈(MIP-PSD)。 对不同压缩水平的GDL进行X射线断层显微镜,然后为面内和穿过面方向建立微宏关系。 基于这些关系的预测属性与数值传输模拟进行了比较,这给出了非常相似的结果,并且可以概括如下:

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