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热处理工艺对510 MPa级船板用钢组织及性能的影响
引用本文:刘璇,赵刚,李大航,周洪庆,张友鹏,朱义轩,吴宇新. 热处理工艺对510 MPa级船板用钢组织及性能的影响[J]. 金属热处理, 2021, 46(1): 61-64. DOI: 10.13251/j.issn.0254-6051.2021.01.011
作者姓名:刘璇  赵刚  李大航  周洪庆  张友鹏  朱义轩  吴宇新
作者单位:1.海洋装备用金属材料及其应用国家重点实验室,辽宁 鞍山 114009; 2.鞍钢集团钢铁研究院,辽宁 鞍山 114009
摘    要:分别采用870、900、930℃淬火及620、650、680℃回火,研究不同热处理制度对510 MPa级船板用钢原始奥氏体晶粒度、显微组织、强韧性的影响.结果表明:510 MPa级船用试验钢随870、900、930℃淬火温度的升高,晶粒度变为7.5、7、6.5级,强度、平均冲击吸收能量下降;不同温度淬火试验钢随620、...

关 键 词:510 MPa级船板用钢  晶粒度  显微组织  热处理
收稿时间:2020-06-17

Effect of heat treatment process on microstructure and properties of 510 MPa grade ship steel
Liu Xuan,Zhao Gang,Li Dahang,Zhou Hongqing,Zhang Youpeng,Zhu Yixuan,Wu Yuxin. Effect of heat treatment process on microstructure and properties of 510 MPa grade ship steel[J]. Heat Treatment of Metals, 2021, 46(1): 61-64. DOI: 10.13251/j.issn.0254-6051.2021.01.011
Authors:Liu Xuan  Zhao Gang  Li Dahang  Zhou Hongqing  Zhang Youpeng  Zhu Yixuan  Wu Yuxin
Affiliation:1. State Key Laboratory of Metal Material for Marine Equipment and Application,Anshan Liaoning 114009,China; 2. Ansteel Iron & Steel Research Institute,Anshan Liaoning 114009,China
Abstract:Effects of different heat treatment on the grain size,microstructure,strength and impact absorbed energy of 510 MPa steel were studied by quenching at 870,900,and 930℃ and tempering at 620,650 and 680℃,respectively.The results show that with the increase of quenching temperature of 870,900 and 930℃,the grain size of 510 MPa ship steel becomes 7.5,7 and 6.5 respectively,the strength and the average impact absorbed energy decrease.With the increase of the tempering temperature of 620,650 and 680℃,the strength of specimen decreases,and the average impact absorbed energy increases first and then decreases.The 510 MPa grade ship steel has excellent strength and average impact absorbed energy when it is quenched at 900℃ for 1.5 h and tempered at 650℃ for 2 h.Quenching at 870℃ for 1.5 h and tempering at 620℃ for 2 h can be selected for higher strength requirements.
Keywords:510 MPa grade ship steel  grain size  microstructure  heat treatment
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