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Thermodynamics of Oxygen Solutions in Nickel Melts Containing Aluminum and Titanium

机译:含铝和钛的镍熔体中氧气溶液的热力学

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摘要

Thermodynamic analysis of oxygen solutions in nickel melt shows that, as aluminum and titanium are added to the melt, the solubility of oxygen decreases. However, after reaching 0.205% Al and 0.565% Ti, the oxygen concentration in the melt begins to rise with increase in the Al and Ti content. The minimum oxygen concentrations in the reduction of nickel melt by aluminum (1.44×10~(-4)% O) and titanium (2.98×10~(-4)% O) are determined. On that basis, we may propose the optimal approach to alloying nickel melts with aluminum and titanium. First, the melt is reduced by adding sufficient aluminum to minimize the oxygen concentration in the melt (-0.2% Al). Then the oxide formed is removed, so as to prevent repeated oxidation of the melt. Finally, the melt is alloyed with aluminum and titanium to obtain the required alloy composition.
机译:镍熔体中氧气溶液的热力学分析表明,随着铝和钛的添加,氧气的溶解度降低。但是,在达到0.205%的Al和0.565%的Ti之后,熔体中的氧浓度随Al和Ti含量的增加而开始上升。确定了铝(1.44×10〜(-4)%O)和钛(2.98×10〜(-4)%O)还原镍熔体中的最小氧浓度。在此基础上,我们可能会提出将镍熔体与铝和钛合金化的最佳方法。首先,通过添加足够的铝以最小化熔体中的氧浓度(-0.2%Al)来减少熔体。然后除去形成的氧化物,以防止熔体重复氧化。最后,将熔体与铝和钛合金化以获得所需的合金成分。

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