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Removal of Ca from Magnesium Melt by Flux Refining

机译:助熔精炼去除镁熔体中的钙

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Magnesium refining processes re typically based on the use of fluxes, most of which contain MgCl2, KCl, NaCl, CaCl2, or HaCl(2). These fluxes separate the surface oxides, gases, or other contaminates from the metal, The most important physical and chemical properties of a salt melt are the fusibility, density in the operating temperature range (920-1023 K), and viscosity. Therefore, in this study, the physical and chemical properties of various molten salts were examined to find a new refining flux with a low melting point, low viscosity, high reactivity, and good melt protection using thermodynamic calculations and various experiments using inductively coupled plasma emission spectroscopy, scanning electron microscopy-energy dispersive spectroscopy, X-ray diffraction, and X-ray photoelectron spectroscopy. In addition, the effects of the chemical composition of the flux, amount of flux, fluxing temperature, and stirring time and intensity on the relining process of molten magnesium were studied. The optimized conditions for the Mg refining process resulted in a ternary flux system with 31 mass% MgCl2, 60 mass% KCl, and 9 mass% NaCl, through the addition of 1 mass% CaF2 and 5 mass% MgO, and stirring at 150 RPM for 15 min at 953 K.
机译:镁精炼工艺通常基于助熔剂的使用而进行,其中大多数包含MgCl2,KCl,NaCl,CaCl2或HaCl(2)。这些助熔剂将表面的氧化物,气体或其他污染物与金属隔离开来。盐熔体的最重要的物理和化学性质是可熔性,工作温度范围(920-1023 K)的密度和粘度。因此,在这项研究中,通过热力学计算和使用电感耦合等离子体发射的各种实验,研究了各种熔融盐的物理和化学性质,以发现具有低熔点,低粘度,高反应性和良好熔体保护作用的新型精炼焊剂。光谱,扫描电子显微镜-能量色散光谱,X射线衍射和X射线光电子能谱。另外,研究了熔剂的化学组成,熔剂的量,熔剂温度,搅拌时间和强度对熔融镁的熔覆过程的影响。通过添加1质量%CaF2和5质量%MgO,并在150 RPM下搅拌,Mg精炼过程的最佳条件形成了具有31质量%MgCl2、60质量%KCl和9质量%NaCl的三元助熔剂系统。在953 K下持续15分钟。

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