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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Direct preparation of V-Al alloy by molten salt electrolysis of soluble NaVO3 on a liquid Al cathode
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Direct preparation of V-Al alloy by molten salt electrolysis of soluble NaVO3 on a liquid Al cathode

机译:通过在液体Al阴极上的可溶性Navo3的熔盐电解直接制备V-Al合金

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摘要

Vanadium-aluminum (V-Al) alloy, the master alloy for the well-known Ti-6Al-4V alloy, is mainly produced via aluminothermic reduction process of V2O5 over the past decades. However, the reaction rate is too fast and it is difficult to control the product quality. Moreover, the utilization of aluminum is very low due to the production of Al2O3. In this work, a new method is proposed to prepare V-Al alloys by molten salt electrolysis of soluble NaVO3 on a liquid aluminum (Al) cathode in molten NaCl-KCl melt. The results show that VO3- ions can be reduced to metallic V-Al alloys on the liquid Al cathode during electrolysis process. Furthermore, thermodynamic and electrochemical analysis indicate that the reduction of VO3- ions on the liquid Al cathode results from the combined effect of electroreduction and aluminothermic reduction. In this process, the liquid Al can not only reduce VO3- ions to V, but also to combine with vanadium to form V-Al alloys. However, unlike the traditional aluminothermic reduction process, alumina produced due to the aluminothermic reduction will be in-situ electro-reduced to aluminum, which will be helpful to increase the utilization of aluminum. As a result, when the electrolysis voltage is enough large, VO3- ions will be completely reduced. Al3V alloy without alumina can be obtained. (C) 2018 Elsevier B.V. All rights reserved.
机译:钒 - 铝(V-Al)合金,对于公知的Ti-6Al-4V合金的母合金,通过在过去几十年的V2O5铝热还原处理主要产生。然而,反应速度过快,就很难控制产品质量。此外,铝的利用率非常低,由于生产的Al2O3。在这项工作中,一个新的方法,提出了以制备由可溶性偏钒酸钠的对熔融的NaCl-KCl的液体铝(Al)阴极熔化熔融盐电解V-Al合金形成。结果表明,VO3-离子可以在电解过程中可以减少对液体Al阴极金属V-Al合金形成。此外,热力学和电化学分析表明VO3-离子对从电解还原和铝热还原的组合效果的液体Al阴极结果的减少。在这个过程中,液体的Al,不仅可以减少VO3-离子V,而且还与钒结合形成V-Al合金形成。然而,不像传统的铝热还原过程中,产生的氧化铝由于所述铝热还原将在原位电减少到铝,这将有助于提高铝的利用率。其结果是,当电解电压足够大,VO3-离子将被完全还原。能够得到没有氧化铝Al3V合金。 (c)2018年elestvier b.v.保留所有权利。

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