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Effect of quenching temperature on the microstructure of Si-containing steel during quenching and partitioning 被引量:1
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作者 WANG Huanrong WANG Wei +1 位作者 YANG Ana WANG Guodong 《Baosteel Technical Research》 CAS 2015年第2期18-24,共7页
This study aims to investigate the effect of the 1-step quenching and partitioning (Q&P) process on the microstructure and the resulting Vicker' s hardness of 0.3C-1.5Si-1.5Mn steel by using in-situ dilatometry ,o... This study aims to investigate the effect of the 1-step quenching and partitioning (Q&P) process on the microstructure and the resulting Vicker' s hardness of 0.3C-1.5Si-1.5Mn steel by using in-situ dilatometry ,optical microscopy ( OM ), scanning electron microscopy ( SEM ), X-ray diffractometry ( XRD ), and Vicker ' s hardness measurement. Systematic analyses indicate that the microstructure of the specimens quenched and partitioned at 150℃ ,200 ℃ ,250℃ ,and 300℃ mainly comprises lath martensite and retained austenite. The dilatometry curve of the specimen partitioned at 150℃ is presumably ascribed to the formation of isothermal martensite. In the early stages of partitioning at 200℃,the nearly unchanged dilatation curve is closely related to the synergistic effect of isothermal martensite formation and transitional epsilon carbide precipitation. In the later stages of partitioning at 200 ℃ ,the slight increase in the dilatation curve is due to the continuous isothermal martensite formation. With further increase in partitioning temperature to 250℃, the dilatation increases gradually up to 3600 s, which is related to carbon partitioning and lower bainite formation. Partitioning at a higher temperature of 300 ℃ causes a rapid increase in the dilatation curve during the initial stages, which subsequently levels off upon prolonging the partitioning time. This is mainly attributed to the rapid diffusion of carbon from athermal martensite to retained austenite and continuous formation of lower bainite. 展开更多
关键词 quenching temperature 1 -step quenching and partitioning 1 -step Q&P) dilatometry SEM
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Q-P工艺等温淬火温度对60Mn2SiCr钢组织和力学性能的影响 被引量:1
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作者 王彬 王浩祥 +5 位作者 汪军 王常志 段东 唐拔明 王栋栋 胡云杰 《金属热处理》 CAS CSCD 北大核心 2023年第5期265-269,共5页
利用扫描电镜、X射线衍射仪、冲击试验机、洛氏硬度计和拉伸试验机等,对淬火-配分(Q-P)工艺等温淬火温度对60Mn2SiCr钢微观组织及力学性能的影响进行了研究,并重点分析了试验钢经Q-P处理后微观组织中残留奥氏体含量及残留奥氏体中碳含... 利用扫描电镜、X射线衍射仪、冲击试验机、洛氏硬度计和拉伸试验机等,对淬火-配分(Q-P)工艺等温淬火温度对60Mn2SiCr钢微观组织及力学性能的影响进行了研究,并重点分析了试验钢经Q-P处理后微观组织中残留奥氏体含量及残留奥氏体中碳含量与力学性能的关系。结果表明,等温淬火温度从120℃升高至180℃,试样洛氏硬度、冲击吸收能量、抗拉强度以及伸长率均随着马氏体、残留奥氏体及残留奥氏体中碳含量下降而降低。当Q-P工艺等温淬火温度为120℃时,力学性能最优,试样中残留奥氏体体积分数为13.9%,残留奥氏体中碳含量(质量分数)为1.1%,洛氏硬度为58.8 HRC,冲击吸收能量为50.7 J,抗拉强度为1768 MPa,伸长率达19.6%。 展开更多
关键词 Q-P工艺 60Mn2SiCr钢 等温淬火温度 组织 性能
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