
Overview
Background
Professor Mingxing Zhang’s research interests are in the additive manufactruring of metals and MAX phase mateirals, high entropy alloys, new alloy design through machine learning and application of crystallography to engineering materials, surface engineering of metals, and grain refinement for cast metals.
Prof Zhang is a world leader in the area of crystallography of phase transformations and its applications in engineering materials, and is recognised as one of the top researchers in the areas of phase transformations, grain refinement for cast metals, additive manufacturing of metals, and surface engineering.
Prof Zhang obtained his Bachelor of Engineering from the Inner Mongolian University of Science and Technology and Master of Engineering from Northwestern Polytechnical University, China. In 1997 he was awarded his PhD degree by The University of Queensland. His research expertise and interests include crystallography of phase transformations, grain refinement and alloy development of aluminum and magnesium alloys, surface modification and coatings, bainitic transformation and bainitic steels.
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.
Availability
- Professor Mingxing Zhang is:
- Available for supervision
- Media expert
Fields of research
Qualifications
- Bachelor of Engineering, Institution to be confirmed
- Masters (Coursework) of Engineering, Northwestern Polytechnical University
- Doctor of Philosophy, The University of Queensland
Research interests
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Crystallography of phase transformations in solids
Understanding of the crystallography of phase transformation will leads design more effective materials processing techniques and therefore to produce higher quality materials.
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Additive manufacturing of metals
Additive manufacturing is one of the most advanced manufacturing technologies with advantages of high design freedom, short lead time and direct manufacturing of parts from digital files. But, not all engineering alloys can be additively manufactured at this stage. Prof Mingxing Zhang's research aims to design and develop new alloys that suit for additive manufacturing and to modify or inoculating the currently commercial available alloys so that they can be additively manufactured.
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High entropy alloys
High entropy alloy is a relatively new member in the family of the metallic materials with extraordinary mechanical, physical and chemical properties. But, the currently available high entropy alloys are very expensive due to use of high cost metals such as Co and Ta. Prof Mingxing Zhang's group aims to develop new and cost-effective high entropy alloys with the new design strategy to achieve properties that cannot be achieved in common engineering alloys
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Design of new alloys through machine learning
Currently, there are around 65000 commercial alloys used in engineering. But, engineers still face challenge to select right alloys to fulfil a specific application, particularly for the extreme conditions. Hence, researchers and engineers have never been stopping to design new alloys. But, this is not a simple work because there are trillions possibilities in terms of the combination of chemical combinations with processes. Previously used trial-and-error approach will not work. Our research aims to exploit the potencies and design new alloys using the advanced machine learning technique based on the truth of current alloys followed by experimental verifications.
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MAX phase compound materials
MAX phase compounds (MPCs) are lightweight materials that have both metallic and ceramic characteristics. In addition to their functional performance as magnetic, optoelectronic, radiation-resistant, and electrocatalytic materials, MPC materials are also associated with high corrosion and oxidization resistance at high temperatures, cracking self-healing performance, good thermal and electrical conductivity and high mechanical properties. Hence, MPCs have also been considered as emerging advanced materials for engineering applications at special and extreme conditions, such as high temperature, high pressure and corrosion and oxidization environments, in aerospace, nuclear, defence, electrical and other industrial sectors. However, it is currently difficult to produce large quantities of MAX materials and parts using conventional manufacturing processes. Our research aims to in-situ fabrication of MPC parts through additive manufacturing approach using proper powder mixture and processing control.
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Grain refinement of cast metals
The research focuses on seeking new grain refiners for cast metals based on fundamental research results and to refine the as cast grain size, and to improve the properties of cast metals
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Surface treatment of metallic materials
The research aims at developing new surface treatment techniques and/or modify the current techniques in order to effectively imporve the surface properties of metal components.
Works
Search Professor Mingxing Zhang’s works on UQ eSpace
2009
Journal Article
Sliding wear-induced microstructure evolution of nanocrystalline and coarse-grained AZ91D Mg alloy
Sun, H.Q., Shi, Y.N. and Zhang, M.X. (2009). Sliding wear-induced microstructure evolution of nanocrystalline and coarse-grained AZ91D Mg alloy. WEAR, 266 (7-8), 666-670. doi: 10.1016/j.wear.2008.08.004
2009
Journal Article
Crystallography of self-assembled DySi2 nanowires on a Si substrate
Qiu, D., Zhang, M.X. and Kelly, P.M. (2009). Crystallography of self-assembled DySi2 nanowires on a Si substrate. Applied Physics Letters, 94 (8) 083105, 083105.1-083105.3. doi: 10.1063/1.3085772
2009
Conference Publication
Kinetics and morphology of isothermal transformations at intermediate temperature in 15crmnmov steel
Mokuang, Kang, Zhang, Ming-Xing, Feng, Liu and Ming, Zhu (2009). Kinetics and morphology of isothermal transformations at intermediate temperature in 15crmnmov steel. doi: 10.2320/matertrans.MRA2008194
2009
Conference Publication
A Novel Micro-Arc Anodising Process for Aluminium Alloys Containing High Silicon
Shi, Z. and Zhang, M.X. (2009). A Novel Micro-Arc Anodising Process for Aluminium Alloys Containing High Silicon. Switzerland: Trans Tech Publications Ltd. doi: 10.4028/www.scientific.net/MSF.618-619.279
2009
Journal Article
金属合金等温相变的体激活能及相变机制 I. 钢的中温(贝氏体)等温相变. Overall activation energy of isothermal transformation in metal alloy and its mechanism: I. Medium temperature (bainite) isothermal transformation in steels
康沫狂 Kang, Mokuang, 张明星 Zhang, Mingxing, 刘峰 Liu, Feng and 朱明 Zhu, Ming (2009). 金属合金等温相变的体激活能及相变机制 I. 钢的中温(贝氏体)等温相变. Overall activation energy of isothermal transformation in metal alloy and its mechanism: I. Medium temperature (bainite) isothermal transformation in steels. 金属学报, 45 (1), 25-31.
2009
Conference Publication
Cold spray of Al-MMC coatings on magnesium alloys for improved corrosion and wear resistance
Spencer, Kevin, Fabijanic, Daniel and Zhang, Ming Xing (2009). Cold spray of Al-MMC coatings on magnesium alloys for improved corrosion and wear resistance. 4th International Light Metals Technology Conference (LMT 2009), Gold Coast, Austraila, 29 June - 1 July 2009. Zurich, Switzerland: TransTech Publications. doi: 10.4028/www.scientific.net/MSF.618-619.377
2009
Conference Publication
Surface treatment of cast AZ91 alloy
Zhang, Ming-Xing, Hirmke, Joachim, Spencer, Kevin, Sun, Hai-Qing, Shi, Yi-Nong and Shi, Zhiming (2009). Surface treatment of cast AZ91 alloy. 66th Annual World Magnesium Conference, San Francisco, California, May 31 - June 2 2009. Wauconda, IL, United States: International Magnesium Association.
2009
Journal Article
金属合金等温相变的体激活能及相变机制 II. β 黄铜等温相变. Overall activation energy of isothermal transformation in metal alloy and its mechanism: II. Isothermal transformation in beta brasses
康沫狂 Kang, Mokuang, 张明星 Zhang, Mingxing, 刘 峰 Liu, Feng and 朱明 Zhu, Ming (2009). 金属合金等温相变的体激活能及相变机制 II. β 黄铜等温相变. Overall activation energy of isothermal transformation in metal alloy and its mechanism: II. Isothermal transformation in beta brasses. 金属学报, 45 (1), 32-36.
2009
Journal Article
Packed powder diffusion coating of pure aluminium after surface nanocrystallisation
Chang, H.W. and Zhang, M.X. (2009). Packed powder diffusion coating of pure aluminium after surface nanocrystallisation. INTERNATIONAL JOURNAL OF SURFACE SCIENCE AND ENGINEERING, 3 (1-2), 125-134. doi: 10.1504/IJSURFSE.2009.024366
2009
Journal Article
Kinetics and Morphology of Isothermal Transformations at Intermediate Temperature in 15CrMnMoV Steel
Kang, M., Zhang, M.X., Liu, F. and Zhu, M. (2009). Kinetics and Morphology of Isothermal Transformations at Intermediate Temperature in 15CrMnMoV Steel. MATERIALS TRANSACTIONS, 50 (1), 123-129. doi: 10.2320/matertrans.MRA2008194
2008
Conference Publication
Heat treatment of cold spray coatings to form intermetallic layers
Spencer, K. and Zhang, M. X. (2008). Heat treatment of cold spray coatings to form intermetallic layers.
2008
Journal Article
Preface
Zhang, Mingxing and El Mahallawy, Nahed (2008). Preface. Key Engineering Materials, 384
2008
Journal Article
Crystallography of TiSi2 (C54) epitaxy on (111)(Si) and (001)(Si) surfaces
Zhang, Ming-Xing, Qiu, Dong and Kelly, Patrick M. (2008). Crystallography of TiSi2 (C54) epitaxy on (111)(Si) and (001)(Si) surfaces. Thin Solid Films, 516 (16), 5498-5502. doi: 10.1016/j.tsf.2007.07.036
2008
Journal Article
The development of a new grain refiner for magnesium alloys using the edge-to-edge model
Fu, H., Qiu, D., Zhang, M. X., Wang, H., Kelly, P. M. and Taylor, J. A. (2008). The development of a new grain refiner for magnesium alloys using the edge-to-edge model. Journal of Alloys and Compounds, 456 (1-2), 390-394. doi: 10.1016/j.jallcom.2007.02.076
2008
Journal Article
Surface alloying of an Mg alloy subjected to surface mechanical attrition treatment
Sun, H. Q., Shi, Y. N., Zhang, M.-X. and Lu, K. (2008). Surface alloying of an Mg alloy subjected to surface mechanical attrition treatment. Surface and Coatings Technology, 202 (16), 3947-3953. doi: 10.1016/j.surfcoat.2008.02.010
2008
Conference Publication
Surface alloying of Mg alloys after surface nanocrystallization
Zhang, Ming-Xing, Shi, Yi-Nong, Sun, Haiqing and Kelly, Patrick M. (2008). Surface alloying of Mg alloys after surface nanocrystallization. United States: American Scientific Publishers. doi: 10.1166/jnn.2008.373
2008
Journal Article
Crystallography of the simple HCP/FCC system
Zhang, M.X., Chen, S.-Q., Ren, H.-P. and Kelly, P. M. (2008). Crystallography of the simple HCP/FCC system. Metallurgical and Materials Transactions A - Physical Metallurgy and Materials Science, 39A (5), 1077-1086. doi: 10.1007/s11661-008-9497-2
2008
Journal Article
Wear behaviour of AZ91D magnesium alloy with a nanocrystalline surface layer
Sun, H. Q., Shi, Y.-N. and Zhang, M.-X. (2008). Wear behaviour of AZ91D magnesium alloy with a nanocrystalline surface layer. Surface and Coatings Technology, 202 (13), 2859-2864. doi: 10.1016/j.surfcoat.2007.10.025
2008
Journal Article
Subsurface deformation after dry machining of Grade 2 titanium
Dargusch, Matthew Simon, Zhang, Ming-Xing, Palanisamy, Suresh, Buddery, Alexander John Michael and StJohn, David Henry (2008). Subsurface deformation after dry machining of Grade 2 titanium. Advanced Engineering Materials, 10 (1-2), 85-88. doi: 10.1002/adem.200700233
2008
Journal Article
Study of the tribology of medium carbon steels after surface nanocrystallization
Zhang, M., Li, G. B. and Guan, D. L. (2008). Study of the tribology of medium carbon steels after surface nanocrystallization. Tribology, 28, 39.
Funding
Current funding
Past funding
Supervision
Availability
- Professor Mingxing Zhang is:
- Available for supervision
Before you email them, read our advice on how to contact a supervisor.
Available projects
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Development of new cost-effective cast irons for metallurgy processing
Develop new cost-effective cast irons to achieve the same or better grinding results.
(This project is for both demestic and interntional applicants)
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Identify the mechanochemistry of chromium steel grinding media
Chromium steel grinding media have been widely used in different fields for size reduction. In this project, the chemical reactions trigged by the impact and abrasion of chromium steel grinding media and the subsequent modification of solid surface properties will be investigated.
(This project is for domestic applicants only)
Supervision history
Current supervision
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Doctor Philosophy
Additive Manufacturing of High Entropy Alloys
Principal Advisor
Other advisors: Dr Qiyang Tan
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Doctor Philosophy
Design of New Wrought Aluminium Alloys with Improved Performance Assisted by Machine Learning
Principal Advisor
Other advisors: Associate Professor Ruth Knibbe, Dr Qiyang Tan
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Doctor Philosophy
Advanced high strength 316L-TiN steel composites using selective laser melting
Principal Advisor
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Doctor Philosophy
Fabrication of crack-free novel Ni-based superalloys by additive manufacturing
Principal Advisor
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Doctor Philosophy
Additive manufacturing of MAX Phase parts for applications in extreme environments
Principal Advisor
Other advisors: Dr Qiyang Tan
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Doctor Philosophy
Hydrogen embrittlement of additively manufactured advanced structural materials
Principal Advisor
Other advisors: Emeritus Professor Andrej Atrens, Dr Qiyang Tan, Dr Jeffrey Venezuela
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Doctor Philosophy
Development of 3D printed Metal Scaffold to enhance bone in-growth
Principal Advisor
Other advisors: Professor Justin Cooper-White
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Doctor Philosophy
Additive manufacturing of H13 steel
Principal Advisor
Other advisors: Associate Professor Ruth Knibbe, Dr Qiyang Tan
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Doctor Philosophy
Fabrication of crack-free novel Ni-based superalloys by additive manufacturing
Principal Advisor
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Doctor Philosophy
Laser additive manufacturing of iron and its alloys
Associate Advisor
Other advisors: Dr Qiyang Tan
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Doctor Philosophy
Selective Surface Oxidation in Differential Particle Separation
Associate Advisor
Other advisors: Professor Yongjun Peng
Completed supervision
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2024
Doctor Philosophy
Design of New Wrought Aluminium Alloys with Improved Performance Assisted by Machine Learning
Principal Advisor
Other advisors: Associate Professor Ruth Knibbe, Dr Qiyang Tan
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2023
Doctor Philosophy
Novel Approaches to Microstructural improvements of Austenitic Manganese Steel
Principal Advisor
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2023
Doctor Philosophy
Novel approaches to improve the mechanical properties of a high-strength low-alloy steel
Principal Advisor
Other advisors: Emeritus Professor Andrej Atrens
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2022
Doctor Philosophy
Modification of primary carbides in a hypereutectic high chromium cast iron
Principal Advisor
Other advisors: Dr Jeff Chang
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2021
Doctor Philosophy
Development of cost-effective high-entropy alloys with superior mechanical properties
Principal Advisor
Other advisors: Associate Professor Michael Bermingham
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2021
Doctor Philosophy
Design and Tailoring of Additively Manufactured Titanium and Titanium Alloys by Laser Powder Bed Fusion
Principal Advisor
Other advisors: Professor Matthew Dargusch
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2020
Doctor Philosophy
Development of new creep-resistant magnesium alloys with low cost
Principal Advisor
Other advisors: Associate Professor Michael Bermingham
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2018
Doctor Philosophy
Influence of trace addition of Be on the oxidation behaviour of Mg alloys
Principal Advisor
Other advisors: Emeritus Professor Andrej Atrens
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2015
Doctor Philosophy
A Microstructural and Kinetic Study of Molten Aluminium Oxidation in Relation to Dross Formation
Principal Advisor
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2014
Doctor Philosophy
Role of the peritectics in grain refinement of cast aluminium alloys
Principal Advisor
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2013
Doctor Philosophy
Bonding mechanism of cold sprayed Al and Al-Al2O3 composite coatings on Mg alloy
Principal Advisor
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2012
Doctor Philosophy
Development of Novel Surface Coating Techniques for Titanium Alloys
Principal Advisor
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2010
Doctor Philosophy
Surface Nanocrystallization and Surface Alloying of Aluminium Alloys
Principal Advisor
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2022
Doctor Philosophy
The discharge performance of advanced Mg-based alloys for Mg-air battery
Associate Advisor
Other advisors: Emeritus Professor Andrej Atrens
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2022
Doctor Philosophy
Hydrogen Embrittlement of Advanced High Strength Steels for Auto Applications
Associate Advisor
Other advisors: Dr Jeffrey Venezuela, Emeritus Professor Andrej Atrens
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2020
Doctor Philosophy
Inhibition of Bubble Coalescence and Improvement of Froth Flotation Using Acoustic Sound
Associate Advisor
Other advisors: Dr Hangil Park, Associate Professor Liguang Wang
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2019
Doctor Philosophy
Investigation of starches as depressant in the flotation separation of hematite from quartz
Associate Advisor
Other advisors: Associate Professor Liguang Wang
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2018
Doctor Philosophy
Coal flotation using oscillatory air supply
Associate Advisor
Other advisors: Associate Professor Liguang Wang
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2017
Doctor Philosophy
Grain refinement of ferritic structural steel
Associate Advisor
Other advisors: Professor Geoff Wang
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2017
Doctor Philosophy
Influence of hydrogen on some DP, Q&P and TWIP grades of advanced high strength steels for auto construction
Associate Advisor
Other advisors: Emeritus Professor Andrej Atrens
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2017
Doctor Philosophy
The Influence of Hydrogen on MS980, MS1180, MS1300 and MS1500 Martensitic Advanced High Strength Steels Used for Automotive Applications
Associate Advisor
Other advisors: Emeritus Professor Andrej Atrens
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2016
Doctor Philosophy
A study of frother chemistry and froth behaviour in coal flotation
Associate Advisor
Other advisors: Associate Professor Liguang Wang
Media
Enquiries
Contact Professor Mingxing Zhang directly for media enquiries about:
- Biomaterials
- Cast metals
- Crystallography - metals
- Light metals -surface treatment
- Metallic materials
- Metallurgy
- Metals - grain refinement
- Metals - surface treatment
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