炼钢 ›› 2026, Vol. 42 ›› Issue (2): 83-88.

• 产品工艺与质量控制 • 上一篇    下一篇

GCr15轴承钢LF-RH-CC流程夹杂物演变规律

刘洪波1,刘国平2,车晓锐1,刘  颖1,张彩东1,张雲飞1,王  旗3   

  1. 1.河钢材料技术研究院,河北 石家庄 050023;
    2.河钢集团 石钢公司,河北 石家庄 050031;
    3.河北科技大学 材料科学与工程学院,河北 石家庄 050018
  • 出版日期:2026-04-05 发布日期:2026-03-27

Evolution mechanism of inclusions in GCr15 bearing steel during LF-RH-CC process

  • Online:2026-04-05 Published:2026-03-27

摘要: 以高碳铬轴承钢为研究对象,通过扫描电子显微镜及Feature夹杂物自动分析系统等,分析了轴承钢探伤不合格原因,对引起探伤不合格的不同夹杂物进行了分类与统计,发现其主要为MgO-Al2O3尖晶石和CaO-Al2O3半液态夹杂物,占比分别为42.31%和38.46%。通过对轴承钢在LF-RH-CC全流程尺寸不小于3 μm夹杂物的演变及形成机理进行剖析,结果表明,LF精炼过程MgO-Al2O3尖晶石类夹杂物持续增多,且精炼后期钢中夹杂物尺寸增大;在RH真空精炼后,MgO-Al2O3尖晶石类夹杂物和Al2O3类固态夹杂物指数接近降低至0;在浇铸过程中,因二次氧化导致中包内又重新生成大量MgO-Al2O3尖晶石类夹杂物,其聚集长大并遗传至铸坯中成为水浸探伤不合格的重要来源。因此,建议实际生产过程中控制适当的LF精炼与RH精炼软吹时间、降低原辅料带入的钙含量、严格控制浇铸过程以降低二次氧化程度,进而减少钢中MgO-Al2O3尖晶石类夹杂物和CaO-Al2O3半液态夹杂物的形成。

关键词: 轴承钢, 探伤不合, 夹杂物, 演变规律

Abstract: Taking high carbon chromium bearing steel as the research object, the reasons for the failure of flaw detection of bearing steel were analyzed through SEM and Feature inclusions automatic analysis system. Different inclusions that caused the failure of flaw detection were classified and statistically analyzed. The results showed that the inclusions causing the failure of flaw detection were mainly MgO-Al2O3 and CaO-Al2O3 semi-liquid inclusions, accounting for 42.31% and 38.46%, respectively. The evolution and formation mechanism of inclusions with a size not less than 3 μm in the whole process of LF-RH-CC were analyzed through industrial tests, and the results showed that MgO-Al2O3 inclusions continued to increase in the LF refining process, and the size of inclusions in the steel increased at the late stage of LF refining, but the index of MgO-Al2O3 and Al2O3 decreased rapidly to about 0 after RH refining. Until the secondary oxidation caused mass formation of MgO-Al2O3  in the tundish while the casting process. The aggregation, growth, and inheritance of MgO-Al2O3  have become a primary cause of immersion ultrasonic testing failures. Therefore, in order to reduce the MgO-Al2O3  and CaO-Al2O3 semi-liquid inclusions in the steel, it is recommended that in the actual smelting process, control the appropriate LF refining and RH refining soft blowing time,reduce the calcium content of the raw materials, and strictly control the casting process to reduce the degree of secondary oxidation.

Key words: bearing steel, the failure of flaw detection, inclusions, evolution law

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