欢迎登录材料期刊网

材料期刊网

高级检索

从高强韧管线钢的成分设计、微细夹杂物控制、奥氏体晶粒大小、热影响区微观组织、焊接工艺等几个方面阐述了各个因素对管线钢粗晶区韧性的影响,提出了改善高强韧管线钢焊接热影响区粗晶区韧性的思路与方法在于控制管线钢的合金元素、奥氏体晶粒大小、MnS的析出、控制中温转变组织以及特殊焊接工艺的开发.

参考文献

[1] Nayak, SS;Misra, RDK;Hartmann, J;Siciliano, F;Gray, JM .Microstructure and properties of low manganese and niobium containing HIC pipeline steel[J].Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing,2008(1/2):456-463.
[2] 辛希贤,智彦利,徐学利.管线钢焊接粗晶区的韧化方向[J].焊管,2003(05):10-13.
[3] 尹雨群,雷玄威,吴开明.超高强度管线钢的开发现状与趋势[J].中国冶金,2012(09):5-9,25.
[4] 徐学利,张骁勇,石凯,辛希贤.X80高性能管线钢焊接热敏感性研究[J].热加工工艺,2005(07):11-13.
[5] 任毅,张帅,王爽.组织形貌对X80管线钢性能影响[J].北京科技大学学报,2007(08):798-802.
[6] 张学辉,朱国辉,毛卫民.800 MPa级双相钢的合金化设计及成分控制[J].炼钢,2010(05):16-20.
[7] 周珍妮,吴开明.低合金钢中Mo溶质原子的拖曳效应[J].金属热处理,2011(11):1-6.
[8] 高季明;历焕波;郭燕杰 等.大焊接线能量下RE对C-Mn钢熔覆金属低温韧性的影响[J].东北大学学报,1994,15(03):313-314.
[9] 王远琦,陈小伟,李志华,贾书君,刘清友.Nb-Ti微合金钢中的奥氏体晶粒长大行为研究[J].钢铁,2010(04):72-75.
[10] 陈茂爱,武传松,杨敏,唐逸民,吴人洁.Ti-V-Nb微合金钢第二相粒子在焊接热循环过程中的变化规律[J].金属学报,2004(02):148-154.
[11] 黄开文.X80和X100钢级管线钢的合金化原理和生产要点[J].轧钢,2004(06):55-58.
[12] Young C H;Bhadeshia H K D H .The strength of mixtures of bainite and martensite[J].Materials Science and Technology,1994,10:209-214.
[13] M. Eroglu;M. Aksoy .Effect of initial grain size on microstructure and toughness of intercritical heat-affected zone of a low carbon steel[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2000(2):289-297.
[14] Ehsan Gharibshahiyan;Abbas Honarbakhsh Raouf;Nader Parvin;Mehdi Rahimian .The effect of microstructure on hardness and toughness of low carbon welded steel using inert gas welding[J].Materials & design,2011(4):2042-2048.
[15] 卢伟煜 .Zr-Ti复合脱氧对高强度钢力学性能与焊接性能的影响[D].武汉科技大学,2011.
[16] 耿相军,陈茂爱.微合金管线钢焊接粗晶热影响区及焊缝的第二相粒子分析[J].热加工工艺,2009(03):5-9.
[17] 罗海文,董瀚.高级别管线钢X80~X120的研发与应用[J].中国冶金,2006(04):9-15.
[18] 刘中柱,桑原守.氧化物冶金技术的最新进展及其实践[J].炼钢,2007(03):7-13.
[19] Mutsuo N;Yu-ichi K .Improvement of welded HAZ toughness by dispersion with nitride particles and oxide particles[J].Japanese Weld Soc,1983,52(02):117-131.
[20] 尚德礼,吕春风,于广文.钛脱氧低碳钢液凝固过程中氧化物的析出和长大[J].铸造,2008(06):553-556.
[21] 尚德礼,李德刚,吕春风,康磊,邓伟.基于氧化物冶金技术的钛/铝脱氧技术应用研究[J].北京科技大学学报,2010(11):1418-1421,1446.
[22] Lu W Y;Wang H H;Wu K M et al.Effect of Ti-Zr complex deoxidation on the mechanical properties of high-strength low-alloy steels[J].Advanced Materials Research,2011,146-147:1878-1884.
[23] 田志凌,何长红,张晓牧,邹刚,屈朝霞.400MPa级超细晶粒钢的焊接[J].焊接学报,2001(06):1-3.
[24] 焦兰,刘清友,孙新军,贾书君,宋宁.Ti、N含量对焊接粗晶区晶粒尺寸及韧性的影响[J].材料热处理学报,2010(10):43-47.
[25] 余圣甫,雷毅,黄安国,谢明立,李志远.氧化物冶金技术及其应用[J].材料导报,2004(08):50-52.
[26] Liu S.;Liao FC. .Precipitate stability in the heat affected zone of nitrogen-enhanced high strength low alloy steels[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,1998(2):273-283.
[27] Nes E;Ryum N;Hunderi O .The effect of precipitate on abnormal grain growth[J].Acta Metallurtica,1985,33(11):156-200.
[28] Zener C .Theory of DO for atomic diffusion in metals[J].Journal of Applied Physics,1951,22:372-375.
[29] Matsuda S;Okumura N .Effect of distribution of Ti nitride precipitate particles on the austenite grain size of low carbon and low alloy steels[J].Transactions of the Iron and Steel Institute of Japan,1978,18(04):198-205.
[30] 陈茂爱,唐逸民,楼松年.X-60钢及其焊接粗晶区中的第二相粒子研究[J].山东工业大学学报,2000(03):242-249.
[31] Loberg B;Nordgrcn A .The role of alloy composition on stability of nitrides in Ti-microalloyed steels during weld thermal cycle[J].Metallurgical Transactions A,1984,15(01):33-41.
[32] 陈翠欣,李午申.X80管线钢焊接粗晶区晶粒长大的动力学模型[J].机械工程材料,2006(11):69-72.
[33] 韩顺昌 .针状铁素体物理冶金学[J].材料开发与应用,1995,10(05):1-7.
[34] 雷玄威,王红鸿,尹雨群,赵晋斌,钱勇,吴开明.超低碳超高强X120管线钢焊接热影响区粗晶区的组织转变[J].焊接学报,2012(03):73-76.
[35] Bradley J R;Rigsbee J M;Aaronson H I .Growth kinetics of grain boundary ferrite allotriomorphs in Fe-C alloys[J].Metallurgical Materials Transactions A:Physical Metallurgy and Materials Science,1977,8(02):323-333.
[36] 国旭明,钱百年,王玉.夹杂物对微合金钢熔敷金属针状铁素体形核的影响[J].焊接学报,2007(12):5-8,12.
[37] 李占杰,余圣甫,雷毅,姚芳.氧化物冶金钢CGHAZ中有益夹杂物的作用[J].焊接学报,2007(06):57-60.
[38] Gregg J M .Ferrite nucleation on non-metallic inclusions in steel[D].London:University of Cambridge,1994.
[39] Shim J H;Byun J S;Cho Y W.Mn absorption characteristics of Ti2O3 inclusions in low carbon steels[J].Scripta Materialia,2001(44):49-51.
[40] Takahiro Shirane;Masatsugu Shimizu;Susumu Tsukamoto.Reverse transformation behavior in B containing high Cr heat resistant steel HAZ[A].,2009:284-291.
[41] Zhu, K.;Oberbillig, C.;Musik, C.;Loison, D.;Iung, T. .Effect of B and B+Nb on the bainitic transformation in low carbon steels[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2011(12):4222-4231.
[42] Mitsuhiro Okatsu.Metallurgical and mechanical features of X100 linepipes steel[A].UK:Scientific Surveys Ltd,2002:263-272.
[43] Tatsumi Kimura;Mitsuo Hisada;Seiji Fuzisawa .Steel Plates for Architectural Construction with Excellent Toughness in Large Heat Input Welded Joints[J].川崎製鉄技報,2002(4):158-163.
[44] Barin I.Thermochemical Data of Pure Substances[M].Weinheim:VCH Publishers,1989
[45] KIMURA Tatsumi;SUMI Hiroyuki;KITANI Yasushi .High Tensile Strength Steel Plates and Welding Consumables for Architectural Construction with Excellent Toughness in Welded Joint -"JFE EWEL" Technology for Excellent Quality in HAZ of High Heat Input Welded Joints-[J].JFE technical report,2005(5):45-52.
[46] 陈茂爱,武传松,王建国,唐逸民,楼松年.含Ti微合金钢中的第二相粒子对焊接粗晶热影响区组织及韧性的影响[J].焊接学报,2002(03):37-40.
[47] Guo A M;Li S R;Guo J et al.Effect of zirconium addition on the impact toughness of heat affected zone in high strength low alloy pipeline steel[J].Materials Characterization,2008,59:134-139.
[48] 赵琳,张旭东,陈武柱.800 MPa级低合金钢焊接热影响区韧性的研究[J].金属学报,2005(04):392-396.
[49] 缪成亮,尚成嘉,王学敏,张龙飞,Mani Subramanian.高Nb X80管线钢焊接热影响区显微组织与韧性[J].金属学报,2010(05):541-546.
[50] 薛小怀,周昀,钱百年,李晶丽,楼松年.X80管线钢焊接粗晶区组织与韧性的研究[J].上海交通大学学报,2003(12):1854-1857.
[51] Mendoza R.;Alanis M.;Perez R.;Alvarez O.;Gonzalez C.;Juarez-Islas JA. .On the processing of Fe-C-Mn-Nb steels to produce plates for pipelines with sour gas resistance[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2002(1/2):115-120.
[52] 周琦,季根顺,张建斌,王继红,王建刚.管线钢中的硫化夹杂物与氢致开裂[J].材料工程,2002(09):37-39,46.
[53] 镇凡,刘静,黄峰,程吉浩,李翠玲,郭斌,徐进桥.夹杂物对X120管线钢氢致开裂的影响[J].中国腐蚀与防护学报,2010(02):145-149,154.
[54] Zhongzhu LIU;Jun WEI;Kaike CAI .A Coupled Mathematical Model of Microsegregation and Inclusion Precipitation during Solidification of Silicon Steel[J].ISIJ International,2002(9):958-963.
[55] 杨成威,吕迺冰,卓晓军,王新华,王万军.MnS在Ti-Al复合脱氧氧化物上的析出研究[J].钢铁,2010(11):32-36.
[56] 李景波,王刚,沙玉章,李建军,崔万平,张瑞伟,严洪丽.高炉炉体立缝高效气电立焊技术及应用[J].焊接,2006(05):48-50.
[57] 李雪梅.大型储油罐纵缝气电立焊焊接工艺[J].焊接技术,2006(05):69-70.
[58] Wang H H;Wu K M;Lei X W et al.Effect of fast cooling process on microstructure and toughness of heat-affected zone in high strength pipeline steel X120[J].SCIENCE AND TECHNOLOGY OF WELDING AND JOINING,2012,17(04):309-313.
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%