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Features of Phase Formation During Aluminothermal Preparation of Aluminum-Erbium Master Alloy

机译:铝 - 铒大师合金铝制制剂期间相形成的特征

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摘要

A lack of domestic technology for preparing aluminum-erbium master alloy intended for improving the physicomechanical properties of aluminum alloys gives rise to the importance of creating technology for aluminothermal reduction of erbium compounds from chloride-fluoride melts. Thermodynamic analysis of aluminothermal reduction of erbium fluoride and oxide taking account of intermetallic compound Al3Er formation makes it possible to determine the thermodynamic possibility of the process. The phase composition of fluxes used for preparing master alloy of the Al-Er system from erbium fluoride and oxide is studied. Experimental data are provided for aluminothermal preparation of Al-Er master alloy from erbium fluoride and oxide. The effect of mixing melt and preliminary remelting a mixture of salts and zernolite, and the structure and phase composition of the master alloy specimens obtained are studied.
机译:缺乏用于制备用于改善铝合金物理机械性能的铝铒主机合金的国内技术引起了从氯化物熔体中产生铒化合物的氧化铒化合物的技术的重要性。 考虑金属化合物Al3er形成的氟化铒和氧化物的氟化铒和氧化物的热力学分析使得可以确定该方法的热力学可能性。 研究了用于制备来自氟化铒和氧化铒的Al-ER系统的母合金的助熔剂的相组成。 提供实验数据,用于氟化铒和氧化物的Al-ER主合金的铝制制备。 研究了混合熔融和初步重熔的盐和亚沸石的混合物的效果,以及所得母合金标本的结构和相组合物。

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