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Measurement of effective bulk and contact resistance of gas diffusion layer under inhomogeneous compression - Part II: Thermal conductivity

机译:非均匀压缩下气体扩散层有效体积和接触电阻的测量第二部分:导热系数

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The gas diffusion layer (GDL) is a thin porous layer sandwiched between a bipolar plate (BPP) and a catalyst coated membrane in a fuel cell. Besides providing passage for water and gas transport from and to the catalyst layer, it is responsible for electron and heat transfer from and to the BPP. In this paper, a method has been developed to measure the GDL bulk thermal conductivity and the contact resistance at the GDL/BPP interface under inhomogeneous compression occurring in an actual fuel cell assembly. Toray carbon paper GDL TGP-H-060 was tested under a range of compression pressure of 0.34 to 1.71 MPa. The results showed that the thermal contact resistance decreases non -linearly (from 3.8 x 10(-4) to 1.17 x 10(-4) Km(2) W-1) with increasing pressure due to increase in microscopic contact area between the GDL and BPP; while the effective bulk thermal conductivity increases (from 0.56 to 1.42 Wm(-1) K-1) with increasing the compression pressure. The thermal contact resistance was found to be greater (by a factor of 1.6-2.8) than the effective bulk thermal resistance for all compression pressure ranges applied here. This measurement technique can be used to identify optimum GDL based on minimum bulk and contact resistances measured under inhomogeneous compression. (C) 2016 Elsevier B.V. All rights reserved.
机译:气体扩散层(GDL)是夹在双极板(BPP)和燃料电池中的催化剂涂覆膜之间的薄多孔层。除了提供水和气体往返于催化剂层的通道外,它还负责电子和热量从BPP传递到BPP。在本文中,已经开发出一种方法来测量实际燃料电池组件中发生不均匀压缩时的GDL体积导热系数和GDL / BPP界面处的接触电阻。在0.34至1.71 MPa的压缩压力范围内测试了Toray碳纸GDL TGP-H-060。结果表明,由于GDL之间的微观接触面积增加,随着压力的增加,热接触电阻非线性减小(从3.8 x 10(-4)减小到1.17 x 10(-4)Km(2)W-1)。和BPP;而有效的整体热导率随压缩压力的增加而增加(从0.56 Wm(-1)K-1增加到1.42 Wm(-1)K-1)。对于这里施加的所有压缩压力范围,发现热接触电阻大于有效体积热阻(系数为1.6-2.8)。此测量技术可用于基于在不均匀压缩下测得的最小体积和接触电阻来确定最佳GDL。 (C)2016 Elsevier B.V.保留所有权利。

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