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Investigation of precipitation and growth behavior of Ti inclusions in tire cord steel

机译:轮胎帘线钢中Ti夹杂物的析出和生长行为研究

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The precipitation and growth behavior of Ti inclusions in 82 grade tire cord steel was investigated by thermodynamic and kinetic calculation. Under the same condition without considering microsegregation, the priority of inclusions to precipitate is in the order of Ti3O5, Ti2O3, and TiO2. The formation of TiN cannot precipitate in the liquid region, or in two-phase phase region. Considering microsegregation, the formation of TiN only took place in the two-phase region where the solid fraction is greater than 0.95, or in solid phase region. The segregation degree of oxygen is the strongest, followed by titanium and last by nitrogen. The higher the solute concentration, the earlier the inclusions precipitate. The greater the cooling rate during solidification, the shorter the time for Ti inclusion particles growth and the smaller the size of precipitated Ti inclusion particles. Under the current control condition, in the refining process, the main types of Ti inclusions are Ti3O5, which usually coexists with other oxides. In the billets, the main types of Ti inclusions are TiN in the tire cord steel. The calculated size of precipitated Ti oxide is in close agreement with the one measured by SEM.
机译:通过热力学和动力学计算研究了Ti夹杂物在82级轮胎帘线钢中的析出和生长行为。在不考虑微偏析的相同条件下,夹杂物沉淀的优先顺序为Ti3O5,Ti2O3和TiO2。 TiN的形成不能在液相区域或两相相区域中沉淀。考虑到微偏析,仅在固相分数大于0.95的两相区域或固相区域形成TiN。氧的偏析度最强,其次是钛,最后是氮。溶质浓度越高,夹杂物沉淀越早。凝固过程中的冷却速率越大,Ti夹杂物颗粒生长的时间越短,并且沉淀的Ti夹杂物颗粒的尺寸越小。在目前的控制条件下,在精炼过程中,Ti夹杂物的主要类型为Ti3O5,通常与其他氧化物共存。在钢坯中,Ti夹杂物的主要类型是轮胎帘线钢中的TiN。沉淀的Ti氧化物的计算尺寸与通过SEM测量的尺寸非常一致。

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