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作 者:宁玉亮 何康 刘年富 李祥龙 李烈军[3] 霍向东[1] NING Yu-liang;HE Kang;LIU Nian-fu;LI Xiang-long;LI Lie-jun;HUO Xiang-dong(South China University of Technology,Guangzhou 510640,China;BaowuGroup Guangdong Shaoguan Iron and Steel Co Ltd ,Shaoguan 512123 ,China;School of Mechanicaland Automotive Engineering)
机构地区:[1]江苏大学材料科学与工程学院,江苏镇江212013 [2]宝钢集团广东韶关钢铁集团有限公司,广东韶关512123 [3]华南理工大学机械与汽车工程学院,广东广州510640
出 处:《材料热处理学报》2019年第7期94-100,共7页Transactions of Materials and Heat Treatment
摘 要:由于相变过程中转变量较少,所以难以通过膨胀法测定轴承钢先共析渗碳体的相变温度。本文采用Gleeble3800热模拟实验机,研究在不同冷速下GCr15轴承钢的相变规律,首先通过膨胀法测得珠光体的相变温度区间约为550~700℃,以此为基础,采用金相法研究了先共析渗碳体的相变温度范围约为700~900℃,绘制出GCr15轴承钢完整的相变温度曲线。在此基础上,讨论了采用两阶段冷却工艺抑制先共析渗碳体形成的方案,为现场生产控制GCr15轴承钢中的网状碳化物提供了依据。It is difficult to measure the phase transition temperature of proeutectoid cementite of bearing steel by expansion method due to the small amount of transformation in the process of phase transformation. In this paper, Gleeble3800 thermal simulation experiment machine was used to study the phase transformation behavior of GCr15 bearing steel at different cooling rates. Firstly, the phase transition temperature range of pearlite is about 550-700 ℃ measured by expansion method. Based on this, the transformation temperature range of proeutectoid cementite is about 700-900 ℃ obtained by metallographic method, and the complete phase transition temperature curve of the GCr15 bearing steel is drawn. On this basis, the scheme of suppressing the formation of proeutectoid cementite by two-stage cooling process is discussed, which provides a basis for on-site production control of network carbide of the GCr15 bearing steel.
关 键 词:GCR15轴承钢 珠光体相变 先共析渗碳体 膨胀法 金相法
分 类 号:TG142.4[一般工业技术—材料科学与工程]
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