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An experimental feasibility study of vanadium oxide films on metallic bipolar plates for the cold start enhancement of fuel cell vehicles

机译:金属双极板上氧化钒薄膜用于燃料电池汽车冷启动的实验可行性研究

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An experimental study of vanadium oxide polycrystalline films deposited onto 316L stainless steel bipolar plates as an efficient Joule heating source for fuel cell vehicles was conducted by carefully modulating the negative temperature coefficients of the electrical resistance of the films at subzero temperatures. To fabricate the thin films, a well-mixed precursor solution of vanadium alkoxide and organic cosolvent was prepared by the hydrolytic sol-gel route and then coated on the pre-cleaned flat surface of 316L stainless steel plates with natural passive oxide layers by a dip-coating method. Subsequently, the variation of the nonlinear electrical resistance of the thin film was measured simultaneously over a wide temperature range of -20 to 80 ℃, allowing direct detection of the surface temperature of the thin films. In addition, the adhesion, microstructures, compositions, and morphologies of the vanadium oxide thin films were investigated using the ASTM D3359 method, XRD, FE-SEM, and XPS analyses. A remarkable result from this study was that a temperature increase of 41.65 ℃ was induced by significant Joule heating of the vanadium sesquioxide films on metallic bipolar plates, i.e. approximately 1.8-folded more than the minimum requirement of Joule heating, at a current density of 0.1 A cm~(-2) at -20 ℃. Thus, it was concluded that thermal dissipation from the resistive vanadium oxide films with a negative temperature coefficient can be effectively used as a self-heating source to melt frozen water at subzero ambient temperatures, particularly for fuel cell vehicles.
机译:通过仔细调节低于零温度的薄膜电阻的负温度系数,对沉积在316L不锈钢双极板上作为燃料电池有效焦耳热源的氧化钒多晶薄膜进行了实验研究。为了制备薄膜,通过水解溶胶-凝胶法制备了钒醇盐和有机助溶剂的充分混合的前体溶液,然后通过浸涂将其涂在具有天然钝化氧化物层的316L不锈钢板的预清洁平面上-涂布方法。随后,在-20至80℃的宽温度范围内同时测量了薄膜的非线性电阻变化,从而可以直接检测薄膜的表面温度。此外,使用ASTM D3359方法,XRD,FE-SEM和XPS分析研究了氧化钒薄膜的粘附性,微观结构,组成和形貌。这项研究的显着结果是,通过在金属双极板上显着的焦耳加热五氧化二钒薄膜而引起41.65℃的温度升高,即在电流密度为0.1时,比焦耳加热的最低要求高约1.8倍。在-20℃时为cm〜(-2)。因此,得出的结论是,具有负温度系数的电阻式钒氧化物薄膜的散热可以有效地用作自热源,以融化冷冻水在低于零的环境温度下,特别是对于燃料电池汽车。

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