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首页> 外文期刊>Electrochimica Acta >Electrochemical preparation of Al-Sm intermetallic compound whisker in LiCl-KCl Eutectic Melts
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Electrochemical preparation of Al-Sm intermetallic compound whisker in LiCl-KCl Eutectic Melts

机译:LiCl-KCl共晶熔体中Al-Sm金属间化合物晶须的电化学制备

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This work presents the electrochemical study of Sm(III) on an aluminum electrode in LiCl-KCl melts at 773 K by different electrochemical methods. Three electrochemical signals in cyclic voltammetry, square wave voltammetry, open circuit chronopotentiometry, and cathode polarization curve are attributed to different kinds of Al-Sm intermetallic compounds, Al2Sm, Al3Sm, and Al4Sm, respectively. Al-Sm alloy with different phase structure (Al2Sm and Al3Sm) could be obtained by the potentiostatic electrolysis with the change of electrolytic potentials and time. Al-Sm alloy containing whiskers (Al4Sm) was obtained by potentiostatic electrolysis (- 2.10 V) on an aluminum electrode for 7 hours with the change of electrolytic temperature and cooling rate in LiCl-KCl-SmCl3 (16.5 wt. %) melts. The XRD and SEM&EDS were employed to investigate the phase composition and microstructure of Al-Sm alloy. SEM analysis shows that lots of needle - like precipitates formed in Al-Sm alloy, and their ratios of length to diameter are found to be greater than 10 to 1. The TEM and electron diffraction pattern were performed to investigate the crystal structure of the needle-like precipitates. The results show that the needle - like precipitates are intermetallic compound whiskers. The micro-hardness test and potentiodynamic polarization test illustrate that the micro-hardness and corrosion property of Al-Sm alloy containing whiskers are remarkably improved in comparison with the Al-Sm alloy without whiskers, respectively. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项工作提出了通过不同的电化学方法在773 K的LiCl-KCl熔体中铝电极上Sm(III)的电化学研究。循环伏安法,方波伏安法,开路计时电位法和阴极极化曲线中的三种电化学信号分别归因于不同种类的Al-Sm金属间化合物Al2Sm,Al3Sm和Al4Sm。随着电解电位和时间的变化,通过恒电位电解可以得到具有不同相结构的Al-Sm合金(Al2Sm和Al3Sm)。通过在铝电极上进行恒电位电解(-2.10 V)7小时,随着电解温度和冷却速率的改变,在LiCl-KCl-SmCl3(16.5 wt。%)熔体中获得含晶须的Al-Sm合金(Al4Sm)。利用XRD和SEM&EDS对Al-Sm合金的相组成和显微组织进行了研究。 SEM分析表明,在Al-Sm合金中形成许多针状沉淀物,并且发现它们的长径比均大于10:1。进行TEM和电子衍射图谱研究针的晶体结构样沉淀物。结果表明,针状沉淀物是金属间化合物晶须。显微硬度试验和电位动力学极化试验表明,与不含晶须的Al-Sm合金相比,含晶须的Al-Sm合金的显微硬度和腐蚀性能分别得到了显着改善。 (C)2015 Elsevier Ltd.保留所有权利。

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