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Effects of microrolling parameters on the microstructure and deformation behavior of pure copper
作者姓名:Yi Jing  Hong-mei Zhang  Hao Wu  Lian-jie Li  Hong-bin Jia  Zheng-yi Jiang
作者单位:School of Material and Metallurgy, University of Science and Technology Liaoning, Anshan 114051, China
基金项目:This work was finically supported by the National Natural Science Foundation of China,the Chinese Scholar Council,the Key Laboratory Open Project of Liaoning Province
摘    要:Microrolling experiments and uniaxial tensile tests of pure copper under different annealing conditions were carried out in this paper. The effects of grain size and reduction on non-uniform deformation, edge cracking, and microstructure were studied. The experimental results showed that the side deformation became more non-uniform, resulting in substantial edge bulge, and the uneven spread increased with increasing grain size and reduction level. When the reduction level reached 80% and the grain size was 65 μm, slight edge cracks occurred. When the grain size was 200 μm, the edge cracks became wider and deeper. No edge cracks occurred when the grain size was 200 μm and the reduction level was less than 60%; edge cracks occurred when the reduction level was increased to 80%. As the reduction level increased, the grains were gradually elongated and appeared as a sheet-like structure along the rolling direction; a fine lamellar structure was obtained when the grain size was 20 μm and the reduction level was less than 60%.

关 键 词:micro-rolling    grain  size  effect    reduction    deformation  behavior    microstructure    pure  copper

Effects of microrolling parameters on the microstructure and deformation behavior of pure copper
Yi Jing,Hong-mei Zhang,Hao Wu,Lian-jie Li,Hong-bin Jia,Zheng-yi Jiang.Effects of microrolling parameters on the microstructure and deformation behavior of pure copper[J].International Journal of Minerals,Metallurgy and Materials,2018,25(1):45-52.
Authors:Yi Jing  Hong-mei Zhang  Hao Wu  Lian-jie Li  Hong-bin Jia  Zheng-yi Jiang
Institution:1.School of Material and Metallurgy,University of Science and Technology Liaoning,Anshan,China;2.School of Mechanical, Materials and Mechatronic Engineering,University of Wollongong,Wollongong,Australia;3.An-steel Group,Da-Xing Plant,Anshan,China
Abstract:Microrolling experiments and uniaxial tensile tests of pure copper under different annealing conditions were carried out in this paper. The effects of grain size and reduction on non-uniform deformation, edge cracking, and microstructure were studied. The experimen-tal results showed that the side deformation became more non-uniform, resulting in substantial edge bulge, and the uneven spread increased with increasing grain size and reduction level. When the reduction level reached 80% and the grain size was 65μm, slight edge cracks oc-curred. When the grain size was 200μm, the edge cracks became wider and deeper. No edge cracks occurred when the grain size was 200μm and the reduction level was less than 60%; edge cracks occurred when the reduction level was increased to 80%. As the reduction level increased, the grains were gradually elongated and appeared as a sheet-like structure along the rolling direction; a fine lamellar structure was obtained when the grain size was 20μm and the reduction level was less than 60%.
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