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Characteristic and evolution of inclusions in Al-Killed titanium alloyed steel during air contact process

机译:空气接触过程中Al杀死钛合金钢夹杂物中夹杂物的特性和演化

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摘要

Re-oxidation inclusions in steel are extremely detrimental to the quality of final products due to their complex compositions and large sizes. The detailed knowledge of the re-oxidation process and the evolution of re-oxidation inclusions are preconditions for the removing of inclusions and controlling of steel cleanness. This paper simulates the re-oxidation behavior and tracks the evolution of re-oxidation inclusions in Al-killed titanium alloyed steel by controlling the contact between molten steel and air atmosphere. The experimental results show that the elements aluminum (Al), titanium (Ti), and manganese (Mn) are almost oxidized simultaneously after the exposure of molten steel to air. Large spherical Al-Ti-Mn-Fe-O oxides lump Al2O3, and spherical Mn-Fe-O inclusions appear successively after re-oxidation happens in Al-killed titanium alloyed molten steel. Inclusions in re-oxidation are greatly different from the ones in start material, which include clustered Al2O3, granular Al2O3 or TiN-type inclusions. Themechanisms of agglomeration and growth of inclusions are inferred from the grooves and voids on the surfaces of inclusions. Rod-like inclusions are formed when inclusions collide with each other end-to-end. The characteristics of re-oxidation inclusions in plant samples differ from those in laboratory samples because a series of reactions between inclusions and the elements Al and Ti in molten steel happen continuously.
机译:由于其复杂的组合物和大尺寸,钢的再氧化夹杂物对最终产品的质量非常有害。再氧化过程的详细知识和再氧化夹杂物的演化是用于去除夹杂物和钢清洁的控制的前提条件。本文通过控制钢水和空气气氛之间的接触来模拟再氧化行为,并跟踪铝杀钛合金钢中重新氧化夹杂物的演变。实验结果表明,铝(Al),钛(Ti)和锰(Mn)的元素在钢水暴露到空气之后几乎氧化。大型球形Al-Ti-Mn-Fe-o氧化物块Al 2 O 3和球形Mn-Fe-O夹杂物在杀灭钛合金钢水中再氧化后连续出现。重新氧化中的夹杂物与起始材料中的夹杂物有很大不同,其包括聚集的Al2O3,粒状Al 2 O 3或锡型夹杂物。从夹杂物表面上的凹槽和空隙推断出夹杂物团聚和生长的机制。当夹杂物彼此端到端碰撞时,形成棒状夹杂物。植物样品中重新氧化夹杂物的特征不同于实验室样品中的特征,因为夹杂物和元素之间的一系列反应和钢水中的钢水和Ti之间连续地发生。

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