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A Study on the Transient Inclusion Evolution during Reoxidation of a Fe–Al–Ti–O Melt

机译:Fe-Al-Ti-O熔体再氧化过程中瞬态夹杂物演变的研究

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The effect of a simulated reoxidizing environment on the chemical and morphological evolution of non-metallic oxide inclusions was studied. Additions of 545 ppm and 274 ppm of soluble oxygen were introduced to an Al killed melt containing approximately 600 ppm of Ti and 600 ppm of Al. It was found that inclusion chemistry evolved from Al_(2)O_(3), Al_(2)TiO_(5) and eventually to Ti_(3)O_(5) for the higher oxygen addition case and to Al–Ti complex oxides for the lower oxygen addition one. Morphologically, it was observed that irregular inclusions gradually were replaced by spherical ones during the reoxidation process. These changes are discussed through the coupling of thermodynamic prediction and experimental conditions, and considerations on the local variations of O and metallic element activities.
机译:研究了模拟的再氧化环境对非金属氧化物夹杂物化学和形态演变的影响。将545 ppm和274 ppm的可溶性氧添加到含有约600 ppm的Ti和600 ppm的Al的Al灭活熔体中。研究发现,夹杂化学从高氧的Al_(2)O_(3),Al_(2)TiO_(5)演化成Ti_(3)O_(5),并从Al-Ti复合氧化物演化。较低的氧气添加量之一。从形态上观察,在再氧化过程中,不规则夹杂物逐渐被球形夹杂物代替。通过热力学预测和实验条件的耦合,以及对O和金属元素活度的局部变化的考虑,讨论了这些变化。

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