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Characteristics and Transformation Mechanism of Nonmetallic Inclusions in 304 Stainless Steel during Heat Treatment at 1250 °C

机译:在1250°C热处理期间304不锈钢非金属夹杂物的特性和转化机理

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摘要

Evolutions of two typical types of nonmetallic inclusions, i.e., inclusions based on CaO-SiO2-Al2O3 and MnO-SiO2-Al2O3 of 304 stainless steel were investigated in laboratory-scale experiments under isothermal heat treatment at 1250 °C for 0, 30, 60 and 120 min. Results show inclusion population density increases at the first stage and then decreases while their average size decreases and then increases. Moreover, almost no Cr2O3 content within the inclusion before the heat treatment, but Cr2O3 content increases gradually along with increasing heat treatment time. Furthermore, the increasing of Cr2O3 content in the inclusions would increase their melting points and reduce their plasticities. The experimental results and thermodynamic analysis indicate that there are three steps for inclusion evolution during the heat treatment process, in which Ostwald ripening plays an important role in inclusion evolution, i.e., inclusions grow by absorbing the newly formed small-size MnO-Cr2O3 inclusions.
机译:在1250℃下的等温热处理下,在1250℃下的实验室测量实验中研究了两种典型类型的非金属夹杂物,即基于CaO-SiO 2-Al2O3和MnO-SiO 2-Al2O3的夹杂物的夹杂物。 120分钟。结果显示含有群体密度在第一阶段增加,然后在平均尺寸减小时减少,然后增加。此外,在热处理前几乎没有CR2O3含量,但CR2O3含量随着热处理时间的增加而逐渐增加。此外,夹杂物中Cr2O3含量的增加将增加它们的熔点并减少它们的塑性。实验结果和热力学分析表明,在热处理过程中包含三个步骤,其中骨干熟化在包含进化中起重要作用,即通过吸收新形成的小尺寸MnO-Cr2O3夹杂物而生长。

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