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Thermodynamics of the Oxygen Solutions in Titanium-Containing Fe–Co–Cr Melts

机译:含钛Fe-CO-CR熔化中氧溶液的热力学

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摘要

A thermodynamic analysis of the influence of titanium on the oxygen solubility in Fe–Co–Cr melts at 1873 K is performed. The dependences of the oxygen solubility in Fe–Co–Cr melts on the titanium content are calculated. The titanium content at which the deoxidation reaction mechanism is changed (Cr~(2)O~(3)? $$ ightleftarrows $$ Ti~(3)O~(5)) is as follows: 2.602 × 10_(–3)% Ti for the Fe–10% Co–10% Cr alloy and 2.975 × 10_(–3)% Ti for the Fe–20% Co–25% Cr alloy. A low titanium content insignificantly increases the oxygen concentration determined by the chromium content. At a higher titanium content (after the change of the mechanism of interaction of chromium and titanium with oxygen, when titanium determines the oxygen solubility in the melts), the oxygen concentration substantially decreases and, then, increases after passing a minimum point at a titanium content of ~0.9%. The minimum oxygen concentrations of these alloys are 1.8 × 10_(–3)and 3.9 × 10_(–3)%, respectively.
机译:进行了在1873K下进行1873K的钛对Fe-CO-Cr熔融氧溶解度的热力学分析。计算氧溶解度在Fe-Co-Cr熔融对钛含量的依赖性。脱氧反应机制改变的钛含量(Cr〜(2)O〜(3)?$$ rictivefrarrows $$ Ti〜(3)O〜(5))如下:2.602×10 _( - 3 “Fe-20%CO-25%Cr合金的Fe-10%CO-10%Cr合金和2.975×10×( - 3)%Ti的%Ti。低钛含量不显着增加通过铬含量测定的氧浓度。在更高等的钛含量(在铬的相互作用机制之后,铬与氧气的相互作用后,当钛确定熔体中的氧溶解度)时,氧浓度基本上降低,然后,在通过钛的最小点后增加含量约为0.9%。这些合金的最小氧浓度分别为1.8×10 _( - 3)和3.9×10 _( - 3)%。

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