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热处理工艺对300M超高强度钢组织和性能的影响 被引量:17

Effect of heat treatment on microstructure and properties of 300M ultrahigh strength steel
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摘要 采用SEM、TEM等方法研究了不同回火温度对300M超高强度钢的显微组织和力学性能的影响。结果表明,300M钢经870℃淬火后,在290~320℃范围内回火,显微组织为板条马氏体、下贝氏体和残留奥氏体组成。随着回火温度的升高,板条马氏体宽度由260 nm增加到437 nm,位错密度减小,下贝氏体含量增多;合金的抗拉强度有所下降,韧性呈上升趋势,而屈服强度、伸长率和断面收缩率变化较小。当回火温度为300℃时,强度、塑性和韧性达到一个最佳匹配,合金具有最优的综合力学性能。 Effect of different tempering temperature on microstructure and mechanical properties of 300M ultrahigh strength steel was investigated by using transmission electron microscopy(TEM) and scanning electron microscopy(SEM).The results show that the microstructure of 300M ultrahigh strength steel consists of tempered martensite,lower bainite and residual austenite after quenching at 870 ℃ followed by tempering at 290-320 ℃.With tempering temperature increasing,the width of lath martensite increases from 260 nm to 437 nm,the density of dislocation decreases and the amount of lower bainite increases.The tensile strength of 300M steel declines and its impact toughness increases,however,the yield strength,elongation and area reduction are nearly unchanged with the increase of tempering temperature.The optimal mechanical properties of 300M ultrahigh strength steel can be obtained by tempering at 300 ℃.
出处 《材料热处理学报》 EI CAS CSCD 北大核心 2012年第3期94-98,共5页 Transactions of Materials and Heat Treatment
基金 新世纪优秀人才支持计划(NCET-07-0696)
关键词 300M超高强度钢 回火温度 显微组织 力学性能 300M ultrahigh strength steel tempering temperature microstructure mechanical property
作者简介 作者简介:彭雯雯(1988-),男,E-mail:jxpengwenwen@163.com。 通讯作者:曾卫东,教授,电话:029-88494298,E-mail:zengwd@nwpu.edu.cn。
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  • 1Shanwu Yang, Chengjia Shang,Xinlai He, Xuemin Wang, Yi Yuan (Material Science and Engineering School, University of Science and Technology Beijing, Beijing 100083, China).Stability of Ultra-fine Microstructures during Tempering[J].Journal of University of Science and Technology Beijing,2001,8(2):119-122. 被引量:25
  • 2康永林,陈庆军,王克鲁,孙浩,于浩.700MPa级低碳贝氏体钢的热处理工艺研究[J].材料热处理学报,2005,26(3):96-99. 被引量:44
  • 3范长刚,董瀚,雍岐龙,翁宇庆,王毛球,时捷,惠卫军.低合金超高强度钢的研究进展[J].机械工程材料,2006,30(8):1-4. 被引量:46
  • 4孙尧卿.残留奥氏体与钢的强韧性[J].金属热处理学报,1982,3(1):28-28.
  • 5陈大明 等.40CrMnSiMoVA钢残余奥氏体的稳定性[J].金属热处理学报,1987,8(2):32-32.
  • 6李云凯.金属材料学[M].北京:北京理工大学出版社.2003.
  • 7Tetsuji Htrato, Yuuki Yamamoto, Yasuhiro Awakura.A new surface modification process of steel by pulse electrolysis with asymmetric alternating potential [J].Surface and Coatings Technology, 2003, 169-170:135-138.
  • 8Satrwell B. D. , Natishan P. M. , Singer L. , et al.Replacement of chromium electroplating using HVOF Thermal spray Coatings[EB/OL]. www. hcat.org/documents/AESF%20Plating%20Forum%20Marl 998. pdf.
  • 9Puchi E.S. Cabrera, Berrlos-Ortiz J. A. , Da-Silva J. ,et al. Fatigue behavior of a 4140 steel coated with a colmonoy 88 alloy applied by HVOF[J]. Surface and Coatings Technology, 2003,172 : 128-138.
  • 10Steffens H.D. , Wilden J. , Nassenstein, et al.Influence of HVOF sprayed WC/Co coatings on the high cycle fatigue strength of mild steel[A]. Proc. 8^th National Thermal Spray ConfereneeEC]. Houston, Texas,1995,469-474.

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