欢迎登录材料期刊网

材料期刊网

高级检索

采用热模拟方法,通过不同配分温度的HOP(Heating on-line partitioning)处理,使X80管线钢获得(B+M/A)复相组织和优良的变形能力.采用力学性能测试、材料显微分析和X射线衍射方法研究了在不同配分温度下(B+M/A)X80管线钢的组织演变规律,分析了显微组织对其力学性能的影响.研究结果表明,随着配分温度的升高,由于贝氏体板条宽化、位错密度降低、残余奥氏体含量增加和碳化物的粗化,导致实验钢的强度降低和塑性增加.当配分温度较高时,残余奥氏体稳定性和含量的降低是材料强度增加、塑性降低的显微组织因素.

参考文献

[1] Fujibayashi A;Omata K.JFE steel's advanced manufacturing technologies for high performance steel plates[A].Jpn,2004:8.
[2] Ishikawa N.Design concept and production of high deformability linepipe[A].Calgary:ASME,2006:1.
[3] Toyohisa Shinmiya.Development of high deformability linepipe with resistance to strain-aged hardening by heat treatment on-line process[A].Lisbon,Portugal,2007:2963.
[4] 李鹤林,李霄,吉玲康,陈宏达.油气管道基于应变的设计及抗大变形管线钢的开发与应用[J].焊管,2007(05):5-11.
[5] 高惠临.管线钢与管线钢管[M].北京:中国石化出版社,2012
[6] Glover A.Design,application and installation of an X100 pipeline[A].US,2003
[7] Ishikawa N;Endo S;Kurihara M .Microstructural aspect of deformability of high strength linepipe steels[J].Trans Mater Res Soe Jpn,2006,32:3469.
[8] 朱帅,康永林,李声慈,任康康.配分温度对Q&P钢组织性能的影响[J].热加工工艺,2011(24):176-178.
[9] Edmonds D V et al.Microstructure features of quenching and partitioning:A new martensitic steel heat treatment[J].Materials Science Forum,2007,539-543:4819.
[10] Ishikawa N;Shikanai N;Kondo J.Development of ultrahigh strength linepipes with dual-phases microstructure for high strain application[J].JFE Techn Report,2008(12):15.
[11] 冯耀荣;高惠临;霍春勇.管线钢显微组织的分析与鉴别[M].西安:陕西科学技术出版社,2008
[12] 江海涛,唐荻,米振莉,庄宝潼.配分工艺对低碳Q&P钢中残余奥氏体的影响[J].材料科学与工艺,2011(01):99-103.
[13] Speer JG;Edmonds DV;Rizzo FC;Matlock DK .Partitioning of carbon from supersaturated plates of ferrite, with application to steel processing and fundamentals of the bainite transformation[J].Current opinion in solid state & materials science,2004(3/4):219-237.
[14] 陈连生,杨栋,田亚强,宋进英,魏英立,赵远.配分温度对低碳高强Q&P钢组织及力学性能影响[J].材料热处理学报,2014(01):55-59.
[15] P.J. GIBBS;E. DE-MOOR;M. J. MERWIN .Austenite Stability Effects on Tensile Behavior of Manganese-Enriched-Austenite Transformation-Induced Plasticity Steel[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,2011(12):3691-3702.
[16] Speer J et al.Carbon partitioning into austenite after martensite transformation[J].ACTA MATERIALIA,2003,51:2611.
[17] Clarke A J;Speer J G;Matlock D K et al.Influence of carbon partitioning kinetics on final austenite fraction during quenching and partitioning[J].Scripta Materialia,2009,61:149.
[18] 于庆波,孙莹,倪宏昕,张凯锋.不同类型的贝氏体组织对低碳钢力学性能的影响[J].机械工程学报,2009(12):284-288.
[19] 李振华,张骁勇,高惠临,史维.配分温度对大变形管线钢力学性能的影响[J].河南化工,2011(06):25-27.
[20] 王颖,张柯,郭正洪,陈乃录,戎咏华.残余奥氏体增强低碳Q-P-T钢塑性的新效应[J].金属学报,2012(06):641-648.
[21] 任勇强,谢振家,尚成嘉.低碳钢中残余奥氏体的调控及对力学性能的影响[J].金属学报,2012(09):1074-1080.
[22] 庄宝潼,唐荻,江海涛,刘智.Q&P工艺对0.3C-1.35Mn-1.30Si钢力学性能的影响[J].材料热处理学报,2011(11):34-38.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%