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热处理对AISI4340钢临界点及CCT曲线的影响
引用本文:王春芳,厉勇,李南,路岩,李继康.热处理对AISI4340钢临界点及CCT曲线的影响[J].钢铁,2017,52(3):70-75.
作者姓名:王春芳  厉勇  李南  路岩  李继康
作者单位:1. 钢铁研究总院中心实验室, 北京 100081 2. 钢铁研究总院特殊钢研究所, 北京 100081
基金项目:钢的连续冷却转变曲线测定方法研究及标准修订
摘    要: 采用热膨胀法测定了AISI4340钢的固态相变点,观察了组织和硬度,研究了不同热处理状态对临界点和奥氏体连续冷却转变曲线(CCT曲线)的影响。结果表明,试验钢具有较好的淬透性,冷速为0.03 ℃/s 时得到单一贝氏体组织,冷速为0.03~0.78 ℃/s之间得到马氏体和贝氏体混合组织,冷速大于0.78 ℃/s时相变组织都为马氏体。不同热处理状态对ATSI4340钢的Ac1、]Ac3]有影响,而CCT曲线没有明显差别。弥散分布、介稳定的组织具有较低的Ac1,]原始组织对Ac1]的影响比Ac3]大。

关 键 词:AISI4340钢  热膨胀  热处理  临界点  连续冷却  
收稿时间:2016-07-06

Effect of heat treatment process on critical transformation and CCT curve of AISI4340 steel
WANG Chun-fang,LI Yong,LI Nan,LU Yan,LI Ji-kang.Effect of heat treatment process on critical transformation and CCT curve of AISI4340 steel[J].Iron & Steel,2017,52(3):70-75.
Authors:WANG Chun-fang  LI Yong  LI Nan  LU Yan  LI Ji-kang
Affiliation:(1. Center Laboratory, Central Iron and Steel Research Institute, Beijing 100081, China 2. Institute for Special Steels, Central Iron and Steel Research Institute, Beijing 100081, China)
Abstract:The critical transformation temperature of AISI4340 steel was determined by thermal expansion method,and the microstructure and hardness were observed. The effects of heat treatment process on critical temperature and austen-ite continuous cooling transformation curve(CCT curve)were studied. The results show that the hardenability of the ex-perimental steel is good. The austenite transformation product is bainite when the cooling rate is 0.03℃/s. The austenite transformation products are marensite and bainite when the cooling rates lie in range of 0.03-0.78 ℃/s and martensite when the cooling rate is greater than 0.78℃/s. Ac1 and Ac3 are different with different heat treatment processes and CCT curve is similar. Ac1 of the unstability initial microstructure is lower than the equilibrium initial microstructure. Effect of different initial microstructure to Ac1 is larger than Ac3.
Keywords:AISI4340 steel  thermal expasion  heat treatment  the critical transformation temperature  continuous cooling
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