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Modeling texture development during cold rolling of IF steel by crystal plasticity finite element method

查看全文 作  者:Hejie [1,2]Li;Jingtao [1]Han;Huachun [3]Pi;Zhengyi [4]Jiang;Dongbin [4]Wei;A. Kiet [4]Tieu 高影响力作者 机构地区:[1]School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China;[2]Department of Mechanic & Electricity, Tangshan College, Tangshan 063000, China;[3]Sinosteel Scie-tech Development Company, Beijing 100031, China;[4]School of Mechanical, Materials & Mechatronic Engineering, University of Wollongong, Wollongong NSW 2522, Australia高影响力机构 出  处:《Journal of University of Science and Technology Beijing》索引2008年第15卷第6期,共6页高影响力期刊 摘  要:With the consideration of slip deformation mechanism and various slip systems of body centered cubic (BCC) metals, Taylor-type and finite element polycrystal models were embedded into the commercial finite element code ABAQUS to realize crys-tal plasticity finite element modeling, based on the rate dependent crystal constitutive equations. Initial orientations measured by electron backscatter diffraction (EBSD) were directly input into the crystal plasticity finite element model to simulate the develop-ment of rolling texture of interstitial-free steel (IF steel) at various reductions. The modeled results show a good agreement with the experimental results. With increasing reduction, the predicted and experimental rolling textures tend to sharper, and the results simu-lated by the Taylor-type model are stronger than those simulated by finite element model. Conclusions are obtained that rolling tex-tures calculated with 48 {110}<111>+{112}<111>+{123}<111> slip systems are more approximate to EBSD results. 关 键 词:可塑性 FEM EBSD 电子显微镜法
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