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Prediction of intragranular ferrite nucleation from TiO, TiN, and VN inclusions

机译:由TiO,TiN和VN夹杂物预测晶内铁素体成核

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摘要

The current study presents a method to calculate the critical diameters of TiO, TiN, and VN inclusions for intragranular ferrite (IGF) nucleation in steels. Based on the calculation results, it was noted that the critical diameters of TiO, TiN, and VN inclusions for IGF nucleation were 0.192, 0.355, and 0.810 mu m. The calculation results agreed with the experiment data of a minimum inclusion size for IGF nucleation in the actual steel samples. Moreover, the effects of Mn, C, and S contents on the critical diameters of inclusions were investigated. It was found that the critical diameters of TiO, TiN, and VN inclusions increased with the increasing Mn and C contents. In addition, it was found that S does not have a direct effect on the critical diameters of TiO, TiN, and VN inclusions. However, the increasing S content led to an increased amount of MnS precipitation in the actual steels. This is negative, since MnS is ineffective nucleation site for IGF nucleation. When the amount of MnS increases in steels, the area fraction of IGF slightly decreases. This fact has been investigated by in situ observation experiments.
机译:当前的研究提出了一种计算TiO,TiN和VN夹杂物的临界直径的方法,该临界直径用于钢中的晶粒内铁素体(IGF)成核。根据计算结果,发现用于IGF成核的TiO,TiN和VN夹杂物的临界直径分别为0.192、0.355和0.810μm。计算结果与实际钢样品中IGF成核的最小夹杂物尺寸的实验数据一致。此外,研究了Mn,C和S含量对夹杂物临界直径的影响。发现TiO,TiN和VN夹杂物的临界直径随Mn和C含量的增加而增加。另外,发现S对TiO,TiN和VN夹杂物的临界直径没有直接影响。然而,增加的S含量导致实际钢中MnS沉淀量增加。这是负面的,因为MnS是IGF成核的无效成核位点。当钢中的MnS含量增加时,IGF的面积分数会略有下降。已经通过原位观察实验研究了这一事实。

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