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个人简介
Professor Mingxing Zhang’s research interests are in the application of crystallography to engineering and functional materials, surface engineering of metals, grain refinement for cast metals and epitaxial growth.
Prof Zhang’s research hopes are to apply his fundamental research results to develop new generation metallic materials and to improve the current materials processing techniques. His research outcomes will also offer materials scientists a totally new way to undertake surface treatment for metallic materials, therefore to significantly improve the surface durability of this type of materials. For example, the recently developed new packed powder diffusion coating technique for titanium alloys will enable the replacement of the highly costive superalloys with Ti alloys. The research also hopes to enhance Australia’s competitive ability in international markets in light metals and contribute significantly to material science with the study of the mechanism of phase transformations in solids.
Prof Zhang’s research hopes are to apply his fundamental research results to develop new generation metallic materials and to improve the current materials processing techniques. His research outcomes will also offer materials scientists a totally new way to undertake surface treatment for metallic materials, therefore to significantly improve the surface durability of this type of materials. For example, the recently developed new packed powder diffusion coating technique for titanium alloys will enable the replacement of the highly costive superalloys with Ti alloys. The research also hopes to enhance Australia’s competitive ability in international markets in light metals and contribute significantly to material science with the study of the mechanism of phase transformations in solids.
研究兴趣
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Materials Characterizationpp.113803, (2024)
Journal of Alloys and Compounds (2023): 168861-168861
ADDITIVE MANUFACTURING (2023): 103502-103502
Frontiers in plant science (2023): 1168723
MATERIALS CHEMISTRY AND PHYSICS (2023): 127320-127320
CURRENT OPINION IN SOLID STATE & MATERIALS SCIENCEno. 5 (2023): 101106
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