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Effects of Carbon on the CG HAZ Toughness and Transformation of X80 Pipeline Steel
引用本文:XiaohuaiXUE LuhaiWU BainianQIAN JingliLI SongnianLOU. Effects of Carbon on the CG HAZ Toughness and Transformation of X80 Pipeline Steel[J]. 材料科学技术学报, 2003, 19(6): 580-582
作者姓名:XiaohuaiXUE LuhaiWU BainianQIAN JingliLI SongnianLOU
作者单位:[1]SchoolofMaterialsScienceandEngineering,ShanghaiJiaoTongUniversity,Shanghai200030,China [2]InstituteofMetalResearch,ChineseAcademyofSciences,Shenyang110016,China
摘    要:X80 pipeline steel produced by TMCP has high strength and high toughness with ultrafine grain microstructure. The microstructure coarsens and the toughness worsens at the coarse grained (CG) HAZ apparently after weld simulation. The experimental results indicated that the bainitic ferrite and the second phases formed at cooling are differently as the variation of carbon in base metal. In low carbon steels, the bainitic ferrite laths are long and narrow, the second phases are complex including residual austenite, martensite, the M-A constituent and the Fe3C carbide. The formation of Fe3C carbide is the main reason of the poor toughness in CG HAZ. The ultralow carbon in base metal, however, can improve the CG HAZ toughness through restraining the formation of carbides, decreasing the M-A constituent, increasing the residual austenite content, which are beneficial to the CG HAZ toughness.

关 键 词:碳 热机控制过程 TMCP 合金钢

Effects of Carbon on the CG HAZ Toughness and Transformation of X80 Pipeline Steel
Xiaohuai XUE,Luhai WU,Bainian QIAN,Jingli LI,Songnian LOU. Effects of Carbon on the CG HAZ Toughness and Transformation of X80 Pipeline Steel[J]. Journal of Materials Science & Technology, 2003, 19(6): 580-582
Authors:Xiaohuai XUE  Luhai WU  Bainian QIAN  Jingli LI  Songnian LOU
Affiliation:School of Materials Science and Engineering, Shanghai Jiao Tong University, Shanghai 200030, China;Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China
Abstract:X80 pipeline steel produced by TMCP has high strength and high toughness with ultrafine grain microstructure. The mi-crostructure coarsens and the toughness worsens at the coarse grained (CG) HAZ apparently after weld simulation. The experimental results indicated that the bainitic ferrite and the second phases formed at cooling are differently as the variation of carbon in base metal. In low carbon steels, the bainitic ferrite laths are long and narrow, the second phases are complex including residual austenite, martensite, the M-A constituent and the Fe3C carbide. The formation of Fe3C carbide is the main reason of the poor toughness in CG HAZ. The ultralow carbon in base metal, however, can improve the CG HAZ toughness through restraining the formation of carbides, decreasing the M-A constituent, increasing the residual austenite content, which are beneficial to the CG HAZ toughness.
Keywords:X80 pipeline steel   Weld simulation   CG HAZ   Ultralow carbon   Pe3C carbide
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