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Deoxidation Equilibrium of Titanium in the Iron–Nickel Melts

机译:铁镍熔体中钛的脱氧平衡

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The oxygen solutions in the titanium-containing Fe–Ni melts have been thermodynamically analyzed. When the nickel content rises to 40%, the deoxidation ability of titanium decreases but then it sharply rises with increasing nickel concentration in melt. This can be explained by the fact that although the bond strength of titanium in nickel is considerably stronger in comparison with iron (γ°_(Ti(s)(Fe))=0.0083; γ°_(Ti(s)(Ni))=0.00019), but the bond strength of oxygen in nickel is appreciably weaker that in iron (γ°_(O(Fe))=0.0105; γ°_(O(Ni))=0.357). The oxygen solubility curves pass through a minimum whose position shifts to the higher titanium concentrations with an increase in the nickel content from 0.564% Ti for pure iron to 0.633% Ti for pure nickel. The further addition of titanium causes an increase in the oxygen content in melt. Equilibrium points of oxide phases TiO_(2), Ti_(3)O_(5) and Ti_(2)O_(3) for different alloy compositions at 1873 K were determined. The published results devoted to the oxide phases in iron and nickel deoxidized with titanium are summarized. Deoxidation of Fe–40%Ni melts with titanium was experimentally studied. The experimental and calculated results are in good agreement. The deoxidation abilities of titanium, chromium, manganese, vanadium, silicon, carbon, and aluminum in different Fe–Ni alloys are compared.
机译:对含钛的Fe-Ni熔体中的氧溶液进行了热力学分析。当镍含量增加到40%时,钛的脱氧能力降低,但随后随着熔体中镍浓度的增加而急剧增加。这可以通过以下事实来解释:尽管与铁相比,镍在钛中的结合强度要强得多(γ°_(Ti(s)(Fe))= 0.0083;γ°_(Ti(s)(Ni) )= 0.00019),但是镍中氧的结合强度明显弱于铁中的结合强度(γ°_(O(Fe))= 0.0105;γ°_(O(Ni))= 0.357)。氧溶解度曲线经过一个最小值,该最小值的位置移至较高的钛浓度,并且镍含量从纯铁的0.564%Ti增加到纯镍的0.633%Ti。钛的进一步添加引起熔体中氧含量的增加。确定了1873 K下不同合金成分的氧化物相TiO_(2),Ti_(3)O_(5)和Ti_(2)O_(3)的平衡点。总结了已发表的有关钛和钛脱氧的铁和镍的氧化物相的结果。实验研究了Fe-40%Ni熔体与钛的脱氧。实验和计算结果吻合良好。比较了不同Fe-Ni合金中钛,铬,锰,钒,硅,碳和铝的脱氧能力。

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