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Goss Texture Evolution of Grain Oriented Silicon Steel by High-Energy X-ray Diffraction 被引量:4
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作者 Yong Liu Qiwu Jiang +3 位作者 Yong Wang Yang Ren A.Tidu Liang Zuo 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2014年第3期530-533,共4页
High energy synchrotron diffraction offers great potential to study the recrystallization kinetics of metallic materials. To study the formation of Goss texture ({ [10}(001)) of grain oriented (GO) silicon steel... High energy synchrotron diffraction offers great potential to study the recrystallization kinetics of metallic materials. To study the formation of Goss texture ({ [10}(001)) of grain oriented (GO) silicon steel during secondary recrystallization process, an in situ experiment using hi gh energy X-ray diffraction was designed. The results showed that the secondary recrystallization began when the heating temperature was 1,494 K, and the grains grew rapidly above this temperature. With an increase in annealing temperature, the large grains with 7 orientation [〈111〉//normal direction] formed and gradually occupied the dominant position. As the annealing temperature increased even further, the grains with Goss orientation to a very large size by devouring the 7 orientation grains that formed in the early annealing stage. A single crystal with a Goss orientation was observed in the GO silicon steel when the annealing temperature was 1,540 K. 展开更多
关键词 Grain oriented silicon steel TEXTURE Secondary recrystallization High energy X-ray diffraction (HEXRD)
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In-Situ Annealing Study of Transformation of α and γ Texture of Interstitial-Free Steel Sheet by High-Energy X-Ray Diffraction 被引量:2
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作者 LIU Yan-dong ZHANG Yu-dong +2 位作者 REN Yang Albert Tidu ZUO Liang 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2013年第5期38-41,共4页
High-energy synchrotron diffraction offers great potential for experimental study of recrystallization kinetics. An experimental design to study the recrystallization mechanism of interstitial-free (IF) steel was im... High-energy synchrotron diffraction offers great potential for experimental study of recrystallization kinetics. An experimental design to study the recrystallization mechanism of interstitial-free (IF) steel was implemented. The whole annealing process of cold-rolled IF steel with 80% reduction was observed in situ using high-energy X-ray diffraction (HEXRD). The results show how the main texture component of IF steel change, i.e. the α [∥rolling direction (RD)] fiber texture decreases and the γ [∥normal direction (ND)] fiber texture increases. The important part of the α fiber texture is that both the {100} and {112} texture decrease at the beginning of recrystallization. The γ fiber texture increases at the early stage of recrystallization which stems from the increase of {111}. Nevertheless, the {111} does not change after recrystallization. The dynamic evolution of the main texture components {100}, {112}, {111} and {111} is given by in-situ HEXRD. 展开更多
关键词 IF steel TEXTURE RECRYSTALLIZATION high-energy X-ray diffraction Debye-Scherrer ring
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<110> Fiber Texture Evolution of Ferrite Wires during Drawn-torsion and Drawn-annealing-torsion Process 被引量:2
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作者 Y.D. Liu Y.D. Zhang +1 位作者 A. Tidul L. Zuo 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2012年第11期1010-1014,共5页
In this paper, the texture and microstructure evolution of drawn-torsion and drawn-annealing-torsion ferrite wires are studied by electron back scattering diffraction (EBSD) in order to investigate the special torsi... In this paper, the texture and microstructure evolution of drawn-torsion and drawn-annealing-torsion ferrite wires are studied by electron back scattering diffraction (EBSD) in order to investigate the special torsion texture evolution. Compared to the simulation results, the stable texture components {110}〈 110 〉 and {110}〈112〉 in both drawn-torsion and drawn-annealing-torsion wires display different evolution processes. The texture of the drawn-annealing-torsion wire fits to the Taylor model. A special texture evolution is found in drawn-torsion wires, related to the grain shape, and the heterogeneous deformation. A new plastic deformation viewpoint is suggested based on the special microstructure of drawn ferrite wire. 展开更多
关键词 Texture Electron back scattering diffraction (EBSD) TORSION Plastic deformation
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