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[1] Min Zha, Yan-Jun, Li*, Ragnvald H. Mathiesen, Ruben Bjørge, Hans J. Roven, “Microstructure evolution and mechanical behavior of an Al-7Mg alloy processed by equal channel angular pressing”, Acta Mater., 84 (2015) 42–54.
[2] Min Zha*, Yan-Jun, Li*, Ragnvald H. Mathiesen, Ruben Bjørge, Hans J. Roven, “High ductility bulk nanostructured binary Al alloys processed by equal channel angular pressing and inter-pass annealing”, Scripta Mater., 105 (2015) 22–25.
[3] Hui-Yuan Wang, Zhao–Peng Yu, Lei Zhang, Chun–Guo Liu, Min Zha*, Xiao-Long Nan, Cheng Wang, Qi-Chuan Jiang, “Achieving high strength and high ductility in magnesium alloy using hard-plate rolling (HPR) process”, Scientific Report, (2015) 5:17100.
[4] Hui-Yuan Wang, Feng Liu, Lei Chen, Min Zha*, Qi-Chuan Jiang, “The effect of Sb addition on microstructures and tensile properties of extruded Al-20Mg2Si-4Cu alloy”, Mater. Sci. Eng., in press.
[5] Hui-Yuan Wang, Ting-Ting Feng, Lei Zhang, Chun-Guo Liu, Yue Pan, Min Zha*, Xiao-Long Nan, ChengWang, Qi-Chuan Jiang, “Achieving a weak basal texture in a Mg–6Al–3Sn alloy by wave-shaped die rolling”, Mater. Des. 88 (2015) 157–161.
[6] Min Zha*, Yan-Jun, Li, Ragnvald H. Mathiesen, Ruben Bjørge, Hans J. Roven, “Achieve high ductility and strength in a binary Al-7Mg alloy by severe plastic deformation with inter-pass annealing”, Mater. Sci. Eng., A598 (2014) 141–146.
[7] Min Zha*, Yan-Jun, Li, Ragnvald H. Mathiesen, Hans J. Roven, “Dispersion of soft Bi particles and grain refinement of matrix in an Al-Bi alloy by equal channel angular pressing”, J. Alloys Compd., 605 (2014) 131–136.
[8] Min ZHA*, Yan-Jun, LI, Ragnvald H. MATHIESEN, Ruben Bjørge, Hans J. ROVEN, “Microstructure, hardness evolution and thermal stability of a binary Al-7Mg alloy processed by ECAP with intermediate annealing”, Trans. Nonferrous Met. Soc. China, 24 (2014) 2301−2306.
[9] Min Zha*, Yan-Jun, Li, Ragnvald H. Mathiesen, Christine Baumgart, Hans J. Roven. “Influence of Mg content, grain size and strain rate on mechanical properties and deformation behaviors in Al-Mg alloys processed by ECAP and annealing”, Mater. Sci. Forum 794-796 (2014) 870–875.
[10] Min Zha*, Yan-Jun, Li, Ragnvald H. Mathiesen, Ruben Bjørge, Hans J. Roven, “Annealing response of binary Al-7Mg alloy deformed by equal channel angular pressing”, Mater. Sci. Eng., A586 (2013) 374–381.
[11] M. Zha, H.Y. Wang, S.T. Li, S.L. Li, D. Li, Q.C. Jiang, “Influence of Al addition on the products of self-propagating high-temperature synthesis of Al-Ti-Si system”, Mater. Chem. Phys., 114 (2009), 709-715.
[12] M. Zha, H.Y. Wang, P.F. Xue, L.L. Li, B. Liu, Q.C. Jiang, “Microstructural evolution of Mg-5Si-1Al alloy during partial remelting”, J. Alloys Compd., 472 (2009), L18–L22.
[13] M. Zha, H.Y. Wang, S.J. Lü, N. Zhang, D. Li, Q.C. Jiang, “Self-propagating High-temperature Synthesis of Ti5Si3/TiAl3 Intermetallics”, ISIJ International, 49 (2009), 453–457.
[14] Min ZHA, Hui-yuan WANG, Bo LIU, Bing ZHAO, Min-li LIANG, Dong LI, Qi-chuan JIANG, “Influence of melt superheating on microstructures of Mg-3.5Si-1Al alloys”, Trans. Nonferrous Met. Soc. China, 18 (2008), s107–s112.
[15] Hui-Yuan Wang, M. Zha, Si-Jie Lü, Cheng Wang, Qi-Chuan Jiang*, “Reaction pathway and phase transitions in Al–Ti–Si system during differential thermal analysis”, Solid state science, 12 (2010), 1347–1351.
[16] H.Y. Wang, M. Zha, B. Liu, D.M. Wang, Q.C. Jiang*, “Microstructural evolution behavior of Mg–5Si–1Al alloy modified with Sr-Sb during isothermal heat treatment”, J. Alloys Compd., 480 (2009), L25–L28.
[17] L. Chen, H.Y. Wang, Y.J. Li, M. Zha, Q.C. Jiang*, “Morphology and size control of octahedral and cubic primary Mg2Si in Mg–Si system by regulating Sr contents”, CrystEngComm, 16 (2014) 448–454.