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Research Papers

Microstructure and plastic anisotropy of fine grained AZ31 magnesium alloy fabricated by differential speed rolling at 473 and 573 K

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Pages S5-477-S5-480 | Received 20 Oct 2014, Accepted 18 Dec 2014, Published online: 30 May 2015

References

  • S. Jeong: ‘Joining of dissimilar AZ31B magnesium alloy and SS400 mild steel by hybrid gas tungsten arc friction stir welding’, Met. Mater. Int., 2013, 19, 1251–1257.
  • J. H. Park, H. L. Kim, J. E. Jung and Y. W. Chang: ‘Role of tension twins on warm deformation behavior of AZ31 Mg alloy’, Met. Mater. Int., 2013, 19, 389–398.
  • N. V. Phuong, K. Lee, D. Chang, M. Kim, S. Lee and S. Moon: ‘Zinc phosphate conversion coatings on magnesium alloys: a review’, Met. Mater. Int., 2013, 19, 273–281.
  • J. Yu, J. M. Byun, T. Y. Kim, W. S. Jung and Y. D. Kim: ‘Evaluation of the mechanical properties of Zn–Mg alloys with composition of Mg’, Korean J. Met. Mater., 2013, 51, 393–398.
  • S. Jeong, J. Park, I. Choi and S. H. Park: ‘Effect of the strain rate on the tensile properties of the AZ31 magnesium alloy’, Korean J. Met. Mater., 2013, 51, 701–711.
  • S. H. Park, S. G. Hong, C. S. Lee and H. S. Kim: ‘Effect of texture and {10–12} twin on the low cycle fatigue properties of rolled AZ31 Mg alloy’, Korean J. Met. Mater., 2013, 51, 325–332.
  • J. Koike: ‘Enhanced deformation mechanisms by anisotropic plasticity in polycrystalline Mg alloys at room temperature’, Metall. Mater. Trans. A, 2005, 36, 1689–1696.
  • K. H. Lee and S. I. Hong: ‘Deformation twins in a Cu-Ag nanocomposite processed by equal channel angular pressing (ECAP)’, Korean J. Met. Mater., 2013, 51, 621–627.
  • B. Chen, C. Lu, D. Lin and X. Zeng: ‘Microstructural evolution and mechanical properties of Mg95.5Y3Zn1.5 alloy processed by extrusion and ECAP’, Met. Mater. Int., 2014, 20, 285–290.
  • W. Wang, Y. Song, D. Gao, E. Y. Yoon, D. J. Lee, C. S. Lee and H. S. Kim: ‘Analysis of stress states in compression stage of high pressure torsion using slab analysis method and finite element method’, Met. Mater. Int., 2013, 19, 1021–1027.
  • E. Y. Yoon, D. J. Lee, D. J. Lee, B. Park, M. R. Akbarpour, M. Farvizi and H. S. Kim: ‘Grain refinement and tensile strength of carbon nanotube-reinforced Cu matrix nanocomposites processed by high-pressure torsion’, Met. Mater. Int., 2013, 19, 927–932.
  • S. J. Yoo and W. J. Kim: ‘Microstructure and strengthening mechanisms of carbon nanotube reinforced magnesium matrix composites fabricated by accumulative roll bonding’, Korean J. Met. Mater., 2014, 52, 561–572.
  • C. C. Hsieh, M. S. Shi and W. Wu: ‘Growth of intermetallic phases in Al/Cu composites at various annealing temperatures during the ARB process’, Met. Mater. Int., 2012, 18, 1–6.
  • W. J. Kim, J. B. Lee, W. Y. Kim, H. T. Jeong and H. G. Jeong: ‘Microstructure and mechanical properties of Mg–Al–Zn alloy sheets severely deformed by asymmetrical rolling’, Scr. Mater., 2007, 56, 309–312.
  • H. Watanabe, T. Mukai and K. Ishikawa: ‘Effect of temperature of differential speed rolling on room temperature mechanical properties and texture in an AZ31 magnesium alloy’, J. Mater. Process. Technol., 2007, 182, 644–647.
  • X. Huang, K. Suzuki, A. Watazu, I. Shigematsu and N. Saito: ‘Effects of thickness reduction per pass on microstructure and texture of Mg–3Al–1Zn alloy sheet processed by differential speed rolling’, Scr. Mater., 2009, 60, 964–967.
  • J. B. Lee, T. J. Konno and H. G. Jeong: ‘Effect of differential speed rolling on the anisotropy of mechanical properties and texture evolution of AZ31 Mg alloys’, J. Alloys Compd., 2010, 499, 273–277.
  • J. H. Hollmon: ‘Tensile deformation’, Trans. Metall. Soc. AIME., 1945, 162, 268–290.
  • W. J. Kim, S. J. Yoo, H. T. Jeong, D. M. Kim, B. H. Choe and J. B. Lee: ‘Effect of the speed ratio on grain refinement and texture development in pure Ti during differential speed rolling’, Scr. Mater., 2011, 64, 49–52.
  • X. Huang, K. Suzuki, A. Watazu, I. Shigematsu and N. Saito: ‘Mechanical properties of Mg–Al–Zn alloy with a tilted basal texture obtained by differential speed rolling’, Mater. Sci. Eng. A, 2008, 488, 214–220.
  • R. Narayanasamy and C. Sathiya Narayanan: ‘Forming limit diagram for interstitial free steels part I’, Mater. Sci. Eng. A, 2005, 399, 292–307.

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