首页> 外文期刊>Materials transactions >Production of Ni_(65)Cr_(15)P_(16)B_4 Metallic Glass-Coated Bipolar Plate for Fuel Cell by High Velocity Oxy-Fuel (HVOF) Spray Coating Method
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Production of Ni_(65)Cr_(15)P_(16)B_4 Metallic Glass-Coated Bipolar Plate for Fuel Cell by High Velocity Oxy-Fuel (HVOF) Spray Coating Method

机译:高速氧燃料(HVOF)喷涂法生产燃料电池用Ni_(65)Cr_(15)P_(16)B_4金属玻璃涂层双极板

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In this study, the newly designed bipolar plate for proton exchange membrane fuel cells (PEMFC) was produced by spray-coating the Ni_(65)Cr_(15)P_(16)B_4 metallic glassy alloy on Al plate. The Ni65Cr15P16B4 metallic glass was adopted as a coating material because of its excellent corrosion resistance and the high velocity oxy-fuel (HVOF) spray coating was used for the metallic glass deposition on the Al plates having a bipolar plate flow field. The corrosion resistance of the Ni_(65)Cr_(15)P_(16)B_4 glassy alloy film produced by the HVOF spray-coating was studied under simulated PEMFC environments. As a result, the Ni_(65)Cr_(15)P_(16)B_4 glassy alloy film showed lower corrosion current density than the high-corrosion-resistant stainless steel SUS316L. Then, the electricity generation tests with the single cell having the Ni_(65)Cr_(15)P_(16)B_4 glassy alloy-coated bipolar plates produced in this study were conducted. As a result, the single cell with the metallic glass-coated bipolar plates showed very high I-V performance as well as the cell with the carbon bipolar plates. The long time durability tests for 24 h were also conducted at the constant current density of 200mA~cm~(-2). As a result, the single cell with the glass-coated bipolar plates showed no voltage drop during the test. So, it was found in this study that the Ni_(65)Cr_(15)P_(16)B_4 glassy alloy-coated bipolar plate produced by the HVOF spray-coating have a potential for practical use for the fuel cells.
机译:在这项研究中,新设计的质子交换膜燃料电池双极板(PEMFC)是通过将Ni_(65)Cr_(15)P_(16)B_4金属玻璃态合金喷涂在Al板上制成的。 Ni65Cr15P16B4金属玻璃由于其优异的耐腐蚀性而被用作涂层材料,并且高速氧-燃料(HVOF)喷涂被用于在具有双极板流场的Al板上沉积金属玻璃。在模拟PEMFC环境下研究了HVOF喷涂制备的Ni_(65)Cr_(15)P_(16)B_4玻璃态合金膜的耐蚀性。结果,与高耐蚀不锈钢SUS316L相比,Ni_(65)Cr_(15)P_(16)B_4玻璃态合金膜显示出更低的腐蚀电流密度。然后,用本研究生产的具有Ni_(65)Cr_(15)P_(16)B_4玻璃态合金涂层双极板的单电池进行了发电测试。结果,具有金属玻璃涂覆的双极板的单电池以及具有碳双极板的单电池显示出非常高的I-V性能。在200mA〜cm〜(-2)的恒定电流密度下,还进行了24h的长时间耐久试验。结果,在测试期间具有玻璃涂层双极板的单电池没有显示出电压降。因此,在这项研究中发现,通过HVOF喷涂生产的Ni_(65)Cr_(15)P_(16)B_4玻璃态合金涂覆的双极板具有燃料电池实际应用的潜力。

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