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Investigation of Compositional Change of Inclusions in Martensitic Stainless Steel during Heat Treatment by Newly Developed Analysis Method

机译:新开发的分析方法研究马氏体不锈钢热处理过程中夹杂物的成分变化

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The most important subject in the steelmaking process is the control of non-metallic inclusions. Non-metallic inclusions with a high melting point do not deform during a hot working process because they are relatively hard. Hence, the inclusion composition should be controlled in order to achieve a low melting point to prevent product defects. Therefore, an MnO-SiO_2-based inclusion is considered to be one of the preferred systems. Moreover, the heat treatment of austenitic stainless steel has been reported to influence the composition of MnO-SiO2-type inclusions; these inclusions change into MnO-Cr_2O_3-type, MnO-Nb_2O_5-type, and MnO-V_2O_3-type inclusions. In this study, we investigated the influence of heat treatment on the composition of the inclusions in the martensitic stainless steel. In general, a scanning electron microscope-energy dispersive x-ray spectrometer (SEM-EDS) is used for the quantitative analysis of inclusions; however, SEM-EDS cannot simultaneously analyze a large number of inclusions. Therefore, a new technique using the SEM-EDS along with the image analysis software "Particle Analysis" was used for the chemical analysis and the size measurement of a large number of inclusions (hereafter abbreviated as the PA method). The heat-treatment-induced compositional change of the inclusions in martensitic stainless steel was evaluated by using both the analysis methods.
机译:炼钢过程中最重要的主题是非金属夹杂物的控制。具有高熔点的非金属夹杂物在热加工过程中不会变形,因为它们相对较硬。因此,应当控制夹杂物的组成以实现低熔点以防止产品缺陷。因此,基于MnO-SiO 2的夹杂物被认为是优选的系统之一。此外,据报道,奥氏体不锈钢的热处理会影响MnO-SiO2型夹杂物的成分。这些夹杂物变为MnO-Cr_2O_3-型,MnO-Nb_2O_5-型和MnO-V_2O_3-型夹杂物。在这项研究中,我们研究了热处理对马氏体不锈钢中夹杂物组成的影响。通常,使用扫描电子显微镜-能量色散X射线光谱仪(SEM-EDS)进行夹杂物的定量分析。但是,SEM-EDS无法同时分析大量夹杂物。因此,将使用SEM-EDS和图像分析软件“颗粒分析”的新技术用于大量夹杂物的化学分析和尺寸测量(以下简称为PA法)。使用这两种分析方法对马氏体不锈钢中夹杂物的热处理引起的成分变化进行了评估。

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