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Composition and structure of Al-Sn alloys formed by constant potential electrolysis in an AlCl3-NaCl-KCl-SnCl2 molten salt

机译:在AlCl3-NaCl-KCl-SnCl2熔融盐中恒电位电解形成的Al-Sn合金的组成和结构

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摘要

To form Al-Sn alloys for bearing materials, molten salt electrolysis was performed in an AlCl3-NaCl-KCl molten salt containing SnCl2 at 423 K. The voltammogram showed that the cathodic reduction of the Sn ions started at a potential of 0.5 V vs. Al/Al(III) in the molten salt showing that deposition of pure Sn was possible at 0.5 V. Co-deposition of Al and Sn occurred at potentials more negative than 0.1 V. The co-deposit was composed a solid solution of Al and Sn. The ratio of the Sn in the electrodeposits decreased with the potential from 100 at.% at 0.2 V to 19 at.% at -0.3 V. In the structural observations, electrodeposits with an alternate stacked structure of Al and Sn is obtained at -0.075 V. (c) 2012 Elsevier Ltd. All rights reserved.
机译:为了形成用于轴承材料的Al-Sn合金,在含SnCl2的AlCl3-NaCl-KCl熔融盐中于423 K下进行熔融盐电解。伏安图显示,Sn离子的阴极还原始于0.5 V vs. 5V。熔融盐中的Al / Al(III)表明在0.5 V时可能沉积纯Sn。Al和Sn的共沉积发生在比0.1 V更负的电势下。共沉积由Al和Al的固溶体组成锡电沉积中Sn的比例随着电势的降低而从0.2 V时的100 at。%降至-0.3 V时的19 at。%。在结构观察中,Al和Sn交替堆叠的电沉积在-0.075时获得V.(c)2012 Elsevier Ltd.保留所有权利。

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