Microstructure of a New Kind of Ultra-low Carbon X120 Pipeline Steel
LU Xiu-yu, Deng Zhao-jun, Peng Xian-hua
Abstract
LU Xiu-yu, Deng Zhao-jun, Peng Xian-hua
Abstract
A new kind of ultra-low carbon X120 pipeline steel was prepared in laboratory.Optical microscopy (OM).scanning electron microscopy(SEM).transmission electron microscopy(TKM) and electron backscattered diffraction(KBSD) were used to observe the microstrueture of X120 pipeline steel.The results show that the microstrueture of the steel was primarily characterized by lath-bainite and acicular ferrite.The size of the single lath bainite was 2—5μm in length and 0.2—0.5μm in width.A group of bainite laths in the size 2—5μm was composed of a number of single lath-bainite.Particles of(Nb.Ti)(C.N) and C'u,S(r=1.2 ) were observed,and there were high density of dislocations in bainite laths.The crystallographic orientation in a whole bainite laths was uniform,but distributed with random in different bainite laths.There were a large number of high angle boundaries and low angle boundaries among the fine bainite laths.
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A new kind of ultra-low carbon X120 pipeline steel was prepared in laboratory.Optical microscopy (OM).scanning electron microscopy(SEM).transmission electron microscopy(TKM) and electron backscattered diffraction(KBSD) were used to observe the microstrueture of X120 pipeline steel.The results show that the microstrueture of the steel was primarily characterized by lath-bainite and acicular ferrite.The size of the single lath bainite was 2—5μm in length and 0.2—0.5μm in width.A group of bainite laths in the size 2—5μm was composed of a number of single lath-bainite.Particles of(Nb.Ti)(C.N) and C'u,S(r=1.2 ) were observed,and there were high density of dislocations in bainite laths.The crystallographic orientation in a whole bainite laths was uniform,but distributed with random in different bainite laths.There were a large number of high angle boundaries and low angle boundaries among the fine bainite laths.
Key concepts: Bainite, Lath, Materials science, Transmission electron microscopy, Acicular ferrite, Microstructure, Acicular, Scanning electron microscope