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首页> 外文期刊>Russian Metallurgy(Metally) >Dephosphorization of Complexly Alloyed Nickel Melts under Vacuum Induction Melting Conditions: I. Thermodynamics of Dephosphorization
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Dephosphorization of Complexly Alloyed Nickel Melts under Vacuum Induction Melting Conditions: I. Thermodynamics of Dephosphorization

机译:真空感应熔炼条件下复杂合金镍熔体的脱磷:I.脱磷的热力学

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摘要

A thermodynamic computer simulation of the oxidation potential of a gas-melt—ceramic (80 wt % MgO, 20 wt % Al_2O_3) system under vacuum induction furnace conditions is used to find that the major contribution to this potential at temperatures ranging from 1673 to 2273 K is made by a nickel melt with additives of nickel protoxide. This provides the possibility of oxidative dephosphorization of the metallic melt. The computation of the saturated vapor pressure of phosphorus compounds with the IIA group elements shows that the data obtained for magnesium, calcium, and barium metaphosphates and europium orthophosphate at 1873 K indicate the principal possibility of melt dephosphorization by the evaporation of these compounds under oxidative conditions.
机译:利用热力学计算机模拟了真空感应炉条件下的熔体陶瓷(80 wt%MgO,20 wt%Al_2O_3)系统的氧化电位,发现在1673至2273的温度范围内,对该电位的主要贡献K是由镍熔体和氧化镍添加剂制成的。这提供了金属熔体的氧化脱磷的可能性。具有IIA组元素的含磷化合物的饱和蒸气压的计算表明,在1873 K处获得的偏磷酸镁,钙和钡以及正磷酸euro的数据表明,在氧化条件下,这些化合物的蒸发可能导致熔融脱磷的主要可能性。

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