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Numerical Simulation of Austenite Recrystallization in CSP Hot Rolled C-Mn Steel Strip 被引量:4
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作者 TANG Guang-bo LIU Zheng-dong +4 位作者 DONG Han GAN Yong KANG Yong-lin LI Lie-jun MAO Xin-ping 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2007年第4期49-55,60,共8页
An integrated mathematical model is developed to predict the microstructure evolution of C-Mn steel during multipass hot rolling on the CSP production line, and the thermal evolution, the temperature distribution, the... An integrated mathematical model is developed to predict the microstructure evolution of C-Mn steel during multipass hot rolling on the CSP production line, and the thermal evolution, the temperature distribution, the deformation, and the austenite recrystallization are simulated. The characteristics of austenite recrystallization of hot rolled C-Mn steel in the CSP process are also discussed. The simulation of the microstructure evolution of C-Mn steel ZJ510L during CSP multipass hot rolling indicates that dynamic recrystallization and metadynamic recrystallization may easily occur in the first few passes, where nonuniform recrystallization and inhomogeneous grain size microstructure may readily occur; during the last few passes, static recrystallization may occur dominantly, and the microstructure will become more homogeneous and partial recrystallization may occur at relatively low temperature. 展开更多
关键词 numerical simulation temperature distribution mean flow stress austenite recrystallization
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Effect of Nb on Austenite Recrystallization in High Temperature Deformation Process
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作者 JIAO Duo-tian CAI Qing-wu +1 位作者 WU Hui-bin REN Yi 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2010年第8期39-44,共6页
By analyzing the stepped test pieces with optical microscope,the influence of the technological parameters including rolling temperature and reduction on the austenite recrystallization fraction of steel with Nb conte... By analyzing the stepped test pieces with optical microscope,the influence of the technological parameters including rolling temperature and reduction on the austenite recrystallization fraction of steel with Nb content of 0.08% deformed at high temperature processing was studied,and the deformed austenite recrystallization figures of the test steel were obtained.The result indicates that when the reduction is 60%,the critical temperature of complete recrystallization is 1070 ℃ and the borderline temperature of non-recrystallization is 900 ℃.In contrast with general HSLA steel,the recrystallization and non-recrystallization temperatures are respectively 120 ℃ and 100 ℃ higher than those of ordinary HSLA,so the steel with high content of Nb has better hot processing performance because Nb has great function of holding back recrystallization. 展开更多
关键词 austenite recrystallization technological parameter NIOBIUM
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RECRYSTALLIZATION BEHAVIOR AND PRIOR AUSTENITE GRAIN BOUNDARY CORROSION IN THE PLANE STRAIN COMPRESSION CONDITION FOR A LOW CARBON X70 PIPELINE STEEL 被引量:1
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作者 Y.H.Li J.Wang +1 位作者 Y.S.Li Y.KShan 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2004年第6期830-834,共5页
Recrystallization behavior of a low carbon X70 pipeline steel was studied in the plane strain compression condition. It was found that the dynamic recovery but no dynamic recrystal- lization occurred in the current ex... Recrystallization behavior of a low carbon X70 pipeline steel was studied in the plane strain compression condition. It was found that the dynamic recovery but no dynamic recrystal- lization occurred in the current experimental condition. A method for examining the prior austenite grain boundary corrosion was supposed. 展开更多
关键词 pipeline steel plane strain compression recrystallization austenite grain boundary
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Effects of Ti addition on low carbon hot strips produced by CSP process 被引量:4
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作者 Mingzhuo Bai Delu Liu +3 位作者 Yanzhi Lou Xinping Mao Liejun Li Xiangdong Huo 《Journal of University of Science and Technology Beijing》 CSCD 2006年第3期230-234,共5页
Large quantity of fine Ti(C,N) particles, 15-30 nm in size, were observed in low carbon hot strips added to a small amount of Ti and produced by CSP process. The results showed that the precipitation of Ti(C,N) mo... Large quantity of fine Ti(C,N) particles, 15-30 nm in size, were observed in low carbon hot strips added to a small amount of Ti and produced by CSP process. The results showed that the precipitation of Ti(C,N) mostly took place during soaking and hot rolling, which is significantly different from that in the conventional production. These fine Ti carbonitride particles could be very effective on the austenite grain refinement by hindering grain growth of recrystallized austenite. Their precipitation behavior was discussed and compared with that of the steels produced in the conventional production. 展开更多
关键词 compact strip production (CSP) thin slab direct rolling Ti(C N) precipitation austenite recrystallization grain refinement
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Microstructure evolution and its influence on thermoplasticity of wide and thick continuous casting slab with heavy reduction
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作者 Tian-ci Chen Xin Hu +2 位作者 Tan Zhao Cheng Ji Miao-yong Zhu 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2024年第9期2196-2206,共11页
After the heavy reduction(HR)process was carried out at the solidification end of the continuous casting slab,the austenite grains were refined by recrystallization,which improved the thermoplasticity of the slab.Howe... After the heavy reduction(HR)process was carried out at the solidification end of the continuous casting slab,the austenite grains were refined by recrystallization,which improved the thermoplasticity of the slab.However,the reduction in deformation during the HR process initiated stress concentration at the slab surface,and the crack risk increased.To effectively evaluate the risk of slab surface cracks under these complex conditions,the effect of the HR on the austenite recrystallization and thermoplasticity of a microalloyed slab surface was investigated by 15-pass reduction thermal simulation according to the wide and thick slab continuous casting process.The softening fraction was introduced as a global internal variable to quantitatively analyze various recrystallized re-refined grains.After the critical strain reaches the critical strain of dynamic recrystallization,a variety of recrystallization modes alternately occur.Among them,the contribution rate of dynamic crystallization to the later refinement reaches more than 50%.The contribution rates of static recrystallization and metadynamic recrystallization to grain refinement are almost the same.The thermoplasticity of the slab surface first increases and then decreases with increasing reduction pass.It was verified by transmission electron microscopy that the main reason for the decrease in thermoplasticity is that the dislocation multiplication rate increases,resulting in a sharp increase in stress and a decrease in thermoplasticity. 展开更多
关键词 Solidification end reduction Continuous casting Wide and thick slab austenite recrystallization THERMOPLASTICITY
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Grain refinement of non-magnetic austenitic steels during asymmetrical hot rolling process
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作者 Changsheng Li Biao Ma +2 位作者 Yanlei Song Jianjun Zheng Jikai Wang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2017年第12期1572-1576,共5页
Asymmetrical hot rolling(ASHR) was proposed to acquire productive grain refinement for Fe-20Mn-4Al-0.3C and Fe-18Cr-18Mn-0.5N non-magnetic austenitic steels. The intensive additional shear deformation caused by ASHR... Asymmetrical hot rolling(ASHR) was proposed to acquire productive grain refinement for Fe-20Mn-4Al-0.3C and Fe-18Cr-18Mn-0.5N non-magnetic austenitic steels. The intensive additional shear deformation caused by ASHR promotes the nucleation of recrystallization and grain refining of steel plates. With the speed ratio of 1.2, the austenitic grains were refined to ~5 m on the surface, the recrystallization fraction was enhanced to ~34.7%, and the thickness of fine-grained surface layer increases to ~450m for Fe-20Mn-4Al-0.3 C steel. The Fe-18Cr-18Mn-0.5N steel also exhibited an effective surface grain refinement with an average size of ~3μm, and the recrystallization fraction reached ~76.9% at the speed ratio of 1.15. 展开更多
关键词 Austenitic steels Microstructure recrystallization Grain refining Asymmetrical hot rolling
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