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Effects of Carbon on the CG HAZ Toughness and Transformation of X80 Pipeline Steel 被引量:1

Effects of Carbon on the CG HAZ Toughness and Transformation of X80 Pipeline Steel
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摘要 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. 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.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2003年第6期580-582,共3页 材料科学技术(英文版)
基金 The present work was financially supported by a China National“973”Grant under Contract No.G1998061511.
关键词 X80 pipeline steel Weld simulation CG HAZ Ultralow carbon Pe3C carbide X80 pipeline steel, Weld simulation, CG HAZ, Ultralow carbon, Pe3C carbide
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