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Effect of Pass Deformation on Microstructure, Corrosion and Electrochemical Properties of Aluminum Alloy Anodes for Alkaline Aluminum Fuel Cell Applications

机译:通过变形对碱性铝燃料电池用铝合金阳极组织,腐蚀和电化学性能的影响

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The effect of pass deformation in rolling processes on the microstructure, corrosion resistance and electrochemical activity of Al-Mg-Bi-Sn-Ga-In alloy anodes operated in an alkaline solution (85 °C, 5 mol-L~(-1) NaOH with addition of NaSnO_ with current density of 800 mA-cm~2 was investigated. To analyze the microstructure of aluminum alloy anodes, we used scanning electron microscope, transmission electron microscope and electron backscatter diffraction techniques. We also used the hydrogen evolution method and electrochemical testing techniques to investigate the corrosion and electrochemical behavior of aluminum alloy anodes. The results showed that uniform microstructures with homogeneous distribution of fine active segregated phases as well as an excellent electrochemical performance of the aluminum alloy anodes were achieved by the dynamic recrystallization under pass deformation of 40%. We found that the aluminum alloy anodes (under pass deformation of 40%) had the lowest hydrogen evolution rate (0.092 mL-min~(1)-cm~(-2) ) and the most negative electrode potential (-1.585 V).
机译:轧制过程中的道次变形对在碱性溶液(85°C,5 mol-L〜(-1)下运行的Al-Mg-Bi-Sn-Ga-In合金阳极的组织,耐蚀性和电化学活性的影响研究了添加NaSnO_的NaOH,电流密度为800 mA-cm〜2,采用扫描电子显微镜,透射电子显微镜和电子背散射衍射技术对铝合金阳极的微观结构进行了分析,还采用了析氢法和氢析出法。通过电化学测试技术研究铝合金阳极的腐蚀和电化学行为,结果表明,通过变形后的动态再结晶可以实现均匀的微观组织,均匀的精细活性偏析相分布以及优异的电化学性能。我们发现铝合金阳极(通过变形为40%)具有最低的水合作用生成速率(0.092 mL-min〜(1)-cm〜(-2))和最大负极电位(-1.585 V)。

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