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Effect of Al and Sn on Discharge Behavior of Mg Alloy as Anode for Mg-Air Battery

机译:Al和Sn对Mg-空气电池阳极Mg合金放电行为的影响

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In this study, we researched the effect of Al and Sn on discharge behavior of Mg alloy as anode for Mg-air battery. The as-cast and rolled AT alloys mainly consisted of α-Mg matrix and Al-Mn phases, Mg_2Sn phase. With increase of Al and Sn contents, the discharge property of AT alloy was improved. In case of AT63 alloy, it can be seen that many fine cracks formed on discharge products promote electrochemical reaction from NaCl electrolyte to Mg anode surfaces, and finely dispersed pits formed by micro-galvanic corrosion between α-Mg matrix and Mg-Sn phases promote continuously reaction during discharge test.
机译:在这项研究中,我们研究了铝和锡对作为镁空气电池阳极的镁合金放电行为的影响。铸轧态AT合金主要由α-Mg基体和Al-Mn相,Mg_2Sn相组成。随着Al和Sn含量的增加,AT合金的放电性能得到改善。对于AT63合金,可以看到放电产物上形成的许多细裂纹促进了从NaCl电解质到Mg阳极表面的电化学反应,并且由α-Mg基体和Mg-Sn相之间的微电腐蚀形成的细微的点蚀促进了放电测试过程中连续反应。

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