聚合物电解质膜燃料电池用导电热塑性双极板的电阻测量

R. Yeetsorn, M. Fowler
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引用次数: 6

摘要

导电性是双极板(bp)最重要的性能之一。因此,确定对双极板电阻测量技术有重大影响的可能因素是很重要的。本文描述了一种测量聚合物电解质膜燃料电池用导电热塑性bp电阻的方法。本研究的主要目的是确定影响电阻测量的因素。对于相同材料制成的BP,表面积、厚度和表面积/厚度比(S/T)等尺寸因素对BP电阻测量有显著影响。除表面积和S/T比外,气体扩散层与BP之间的电接触电阻是影响BP电阻测量的另一个因素。所有这些因素都会影响测量电阻,即使使用相同的材料也会改变结果。施加在被测BP上的夹紧压力等外部因素也显著降低了界面接触阻力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Resistance Measurement of Conductive Thermoplastic Bipolar Plates for Polymer Electrolyte Membrane Fuel Cells
Electrical conductivity is one of the most important properties of bipolar plates (BPs). It is, therefore, important to identify possible factors that have a significant effect on bipolar plate electrical resistance measurement techniques. A method for measuring the resistance of conductive thermoplastic BPs for polymer electrolyte membrane fuel cells is described. The major goals of this research are to identify the factors affecting electrical resistance measurements. For BPs made of the same material, dimensional factors such as surface area, thickness and the ratio of surface area over thickness (S/T) could have significant effects on BP resistance measurements. Electrical contact resistance between a gas diffusion layer and a BP is another factor affecting the BP resistance measurement in addition to the surface area and S/T ratio. All these factors can affect the measured resistance and change the result even with the same material. External factors such as clamping pressure applied on the measured BP also reduce the interfacial contact resistance significantly.
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