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Effects of Carbon on the CG HAZ Toughness and Transformation of X80 Pipeline Steel

机译:碳对X80管线钢的CG HAZ韧性和相变的影响

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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 Fe_3C carbide. The formation of Fe_3C 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.
机译:TMCP生产的X80管线钢具有高强度,高韧性和超细晶粒组织。焊接模拟后,粗晶粒(CG)热影响区的组织明显变粗,而韧性则下降。实验结果表明,贝氏体铁素体和冷却时形成的第二相随着母材中碳的变化而不同。在低碳钢中,贝氏体铁素体板条又长又窄,第二相是复杂的,包括残余奥氏体,马氏体,M-A成分和Fe_3C碳化物。 Fe_3C碳化物的形成是CG HAZ韧性差的主要原因。然而,贱金属中的超低碳可通过抑制碳化物的形成,减少M-A成分,增加残余奥氏体含量来提高CG HAZ韧性,从而提高CG HAZ韧性。

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