首页> 美国卫生研究院文献>Materials >Corrosion of Hydrogen Storage Metal Alloy LaMm-Ni4.1Al0.3Mn0.4Co0.45 in the Aqueous Solutions of Alkali Metal Hydroxides
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Corrosion of Hydrogen Storage Metal Alloy LaMm-Ni4.1Al0.3Mn0.4Co0.45 in the Aqueous Solutions of Alkali Metal Hydroxides

机译:贮氢金属合金LaMm-Ni4.1Al0.3Mn0.4Co0.45在碱金属氢氧化物水溶液中的腐蚀

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摘要

Corrosion of pristine AB5-type metal alloy LaMm-Ni4.1Al0.3Mn0.4Co0.45 in the aqueous solutions of alkali metal hydroxides of diverse composition and concentration was tested. Correlation was observed between the alloy corrosion intensity in various hydroxide solutions, and its electrochemical capacity in these electrolytes. Mm(OH)3, CoO(OH), and nickel metal aggregates were detected among the products of selective oxidation of the alloy. High intensity corrosion of the alloy was observed in RbOH and CsOH solutions leading to formation of ternary oxides at the surface of the alloy. Presence of rubidium and cesium ions in the electrolyte were found to create an additional driving force for lanthanides (La and Ce) to leave the lattice of the alloy, thus, enhancing its corrosion. Corrosion, together with mechanical degradation, were found to be the main reasons of deactivation of LaMm-Ni4.1Al0.3Mn0.4Co0.45 alloy upon elongated electrochemical treatment.
机译:测试了原始AB5型金属合金LaMm-Ni4.1Al0.3Mn0.4Co0.45在不同组成和浓度的碱金属氢氧化物水溶液中的腐蚀。在各种氢氧化物溶液中,合金的腐蚀强度与其在这些电解质中的电化学容量之间存在相关性。在合金的选择性氧化产物中检测到Mm(OH)3,CoO(OH)和镍金属聚集体。在RbOH和CsOH溶液中观察到合金的高强度腐蚀,导致在合金表面形成三元氧化物。发现电解质中存在and和铯离子会为镧系元素(La和Ce)离开合金晶格创造额外的驱动力,从而增强其腐蚀。发现腐蚀和机械性能下降是LaMm-Ni4.1Al0.3Mn0.4Co0.45合金在长时间电化学处理后失活的主要原因。

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