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Effect of Heat Treatment Conditions on Shape Control of Large-sized Elongated MnS Inclusions in Resulfurized Free-cutting Steels

机译:热处理条件对硫化硫易切削钢中大尺寸延伸MnS夹杂物形状控制的影响

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Effect of heat treatment conditions on shape evolution of large-sized elongated MnS inclusions in resulfurized free-cutting rolled steel has been investigated using confocal scanning laser microscope and Si_2Mo resistance furnace. The results show that the heating rate, soaking temperature and soaking time impose significant effects upon shape profiles of elongated MnS. The split of slender MnS was oberved in continuous heating with heating rate in the range of 0.5-2 K/s. In addition, split degree of MnS indicated a negative relation with the rise of heating rate. As a result, separation of elongated MnS was not observed at the heating rate of 6 K/s. During soaking experiments, there was no remarkable shape change for MnS at temperature lower than 1 073 K. While the elongated MnS splited up and spheroidized obviously at 1 473 K. Correspondingly, number density of inclusions increased while mean length reduced as the soaking time increased from 1 h to 4 h at 1 473 K. Significant shape change from slender to spindle-like or spherical was identified only when the soaking time exceeds 3 h or 4 h. Based on the Gibbs Thompson relation and the obtained experimental results, mechanism of shape evolution of MnS inclusions was discussed and morphology evolution of MnS was divided into three major steps: (1) first, the shrinkage occurred in the longitudinal direction at the beginning of heating process, (2) expansion and contraction in radial direction followed after the shrinkage which caused the split of slender MnS; (3) eventually, the spherical particles emerged from the split parts.
机译:利用共聚焦扫描激光显微镜和Si_2Mo电阻炉研究了热处理条件对再硫化易切削钢中大尺寸细长MnS夹杂物形状演变的影响。结果表明,加热速率,均热温度和均热时间对伸长的MnS的形貌有显着影响。在加热速率为0.5-2 K / s的连续加热下,细长的MnS裂开。另外,MnS的分裂度与升温速度呈负相关。结果,在6K / s的加热速率下未观察到伸长的MnS的分离。在均热实验中,温度低于1073 K时MnS没有明显的形状变化。而伸长的MnS在1473 K时明显分裂并呈球状。相应地,随着均热时间的增加,夹杂物的数量密度增加而平均长度减小在1 473 K下从1 h到4 h。只有当浸泡时间超过3 h或4 h时,才能从细长形状变为纺锤状或球形。根据吉布斯·汤普森(Gibbs Thompson)关系和获得的实验结果,探讨了MnS夹杂物的形貌演化机理,并将MnS的形貌演化分为三个主要步骤:(1)首先,在加热开始时沿纵向发生收缩过程:(2)收缩后沿径向膨胀和收缩,导致细长的MnS分裂。 (3)最终,球形颗粒从裂开的部分出现。

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