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EFFECT OF PTFE ON THERMAL CONDUCTIVITY OF GAS DIFFUSION LAYERS OF PEM FUEL CELLS

机译:PTFE对PEM燃料电池气扩散层导热系数的影响

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Through-plane thermal conductivity of 14 SIGRACET gas diffusion layers (GDLs), including series 24 & 34, as well as 25 & 35, are measured under different compressive pressures, ranging from 2 to 14 bar, at the temperature of around 60 °C The effect of compression, PTFE loadings, and micro porous layer (MPL) on thermal conductivity of the GDLs and their contact resistance with an iron clamping surface is experimentally investigated. The contact resistance of MPL coated on GDL with the substrate of that GDL is measured for the first time in this paper. A new robust mechanistic model is presented for predicting the through-plane thermal conductivity of GDLs treated with PTFE and is successfully verified with the present experimental data. The model can predict the experimentally-observed reduction in thermal conductivity as a result of PTFE treatment and provides detailed insights on performance modeling of PEMFCs.
机译:在不同的压缩压力下,在不同的压缩压力下测量,在不同的压缩压力下,在不同的压缩压力下测量,包括24℃和34的14个SIGROCET气体扩散层(GDL),包括24℃,25和35,在60°C的温度下测量实验研究了压缩,PTFE载荷和微多孔层(MPL)对GDL的热导率的影响及其与铁夹紧表面的接触电阻。本文首次测量与该GDL的基材上的GDL上的MPL的接触电阻。提出了一种新的鲁棒机制模型,用于预测用PTFE处理的GDL的贯穿平面导热率,并用本实验数据成功验证。该模型可以通过PTFE处理导致实验观察到的导热率降低,并提供了对PEMFC的性能建模的详细见解。

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