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Dr Gui Wang
Dr

Gui Wang

Email: 
Phone: 
+61 7 336 54312

Overview

Background

Dr Gui Wang's research interests are in titanium alloys and their processing, ultrasonic treatment of light metal, and FEA.

Gui Wang is a senior research fellow at DMTC, school of mechanical and mining engineering.

After obtained his PhD at Tsinghua University in 1994, he spent 6 years at the Beijing University of Aeronautics and Astronautics as a post-doctoral research fellow and then an associate professor in 1996 in the research group of near net shape casting technology of aircraft and aero-engine structures and rapid prototyping. He worked for QMI Solution as a research and development engineer when moving to Australia in 2001, senior engineer at advanced moulding Technologies and BoCAR Automotive. He joined UQ in 2008 as a senior research fellow. His primary research activities lie in micro/meso-scale manufacturing, Titanium alloys and processing for both medical and aerospace application, aluminium alloy solidification.

Availability

Dr Gui Wang is:
Available for supervision

Qualifications

  • Bachelor of Engineering, unknown
  • Masters (Coursework) of Engineering, unknown
  • Doctoral Diploma of Engineering, Tsinghua University

Works

Search Professor Gui Wang’s works on UQ eSpace

150 works between 1995 and 2024

61 - 80 of 150 works

2016

Conference Publication

Grain refinement of Al-Si hypoeutectic alloys by Al3Ti1B master alloy and ultrasonic treatment

Wang, Gui, Wang, Eric Qiang, Prasad, Arvind, Dargusch, Matthew and StJohn, David H. (2016). Grain refinement of Al-Si hypoeutectic alloys by Al3Ti1B master alloy and ultrasonic treatment. Shape Casting: 6th International Symposium, Nashville, Tennessee, United States, 14-18 February 2016. Hoboken, NJ, United States: John Wiley & Sons. doi: 10.1002/9781119274865.ch18

Grain refinement of Al-Si hypoeutectic alloys by Al3Ti1B master alloy and ultrasonic treatment

2016

Journal Article

Chip formation characteristics in the machining of titanium alloys: a review

Gao, Yanfeng, Wang, Gui and Liu, Binbin (2016). Chip formation characteristics in the machining of titanium alloys: a review. International Journal of Machining and Machinability of Materials, 18 (1-2), 155-184. doi: 10.1504/IJMMM.2016.075467

Chip formation characteristics in the machining of titanium alloys: a review

2015

Journal Article

An investigation of the mechanical behaviour of fine tubes fabricated from a Ti-25Nb-3Mo-3Zr-2Sn alloy

Zhang, Yaowu, Kent, Damon, Wang, Gui, St John, David and Dargusch, Matthew (2015). An investigation of the mechanical behaviour of fine tubes fabricated from a Ti-25Nb-3Mo-3Zr-2Sn alloy. Materials and Design, 85, 256-265. doi: 10.1016/j.matdes.2015.06.127

An investigation of the mechanical behaviour of fine tubes fabricated from a Ti-25Nb-3Mo-3Zr-2Sn alloy

2015

Journal Article

On the deformation mechanisms and strain rate sensitivity of a metastable β Ti-Nb alloy

Zhan, Hongyi, Zeng, Weidong, Wang, Gui, Kent, Damon and Dargusch, Matthew (2015). On the deformation mechanisms and strain rate sensitivity of a metastable β Ti-Nb alloy. Scripta Materialia, 107, 34-37. doi: 10.1016/j.scriptamat.2015.05.014

On the deformation mechanisms and strain rate sensitivity of a metastable β Ti-Nb alloy

2015

Journal Article

Enhanced Heterogeneous Nucleation by Pulsed Magneto-Oscillation Treatment of Liquid Aluminum Containing Al3Ti1B Additions

Liang, Dong, Sun, Jie, Liu, Tianyu, Zhai, Qijie, Wang, Gui, StJohn, David H., Dong, Hongbiao and Zhong, Honggang (2015). Enhanced Heterogeneous Nucleation by Pulsed Magneto-Oscillation Treatment of Liquid Aluminum Containing Al3Ti1B Additions. Advanced Engineering Materials, 17 (10), 1465-1469. doi: 10.1002/adem.201400488

Enhanced Heterogeneous Nucleation by Pulsed Magneto-Oscillation Treatment of Liquid Aluminum Containing Al3Ti1B Additions

2015

Journal Article

Cutting force, chip formation, and tool wear during the laser-assisted machining a near-alpha titanium alloy BTi-6431S

Gao, Yanfeng, Wang, Gui, Bermingham, Michael J. and Dargusch, Matthew S. (2015). Cutting force, chip formation, and tool wear during the laser-assisted machining a near-alpha titanium alloy BTi-6431S. International Journal of Advanced Manufacturing Technology, 79 (9-12), 1949-1960. doi: 10.1007/s00170-015-6917-5

Cutting force, chip formation, and tool wear during the laser-assisted machining a near-alpha titanium alloy BTi-6431S

2015

Journal Article

Microstructure, elastic deformation behavior and mechanical properties of biomedical β-type titanium alloy thin-tube used for stents

Tian, Yuxing, Yu, Zhentao, Ong, Chun Yee Aaron, Kent, Damon and Wang, Gui (2015). Microstructure, elastic deformation behavior and mechanical properties of biomedical β-type titanium alloy thin-tube used for stents. Journal of the Mechanical Behavior of Biomedical Materials, 45, 132-141. doi: 10.1016/j.jmbbm.2015.02.001

Microstructure, elastic deformation behavior and mechanical properties of biomedical β-type titanium alloy thin-tube used for stents

2015

Journal Article

Microstructural characteristics of adiabatic shear localization in a metastable beta titanium alloy deformed at high strain rate and elevated temperatures

Zhan, Hongyi, Zeng, Weidong, Wang, Gui, Kent, Damon and Dargusch, Matthew (2015). Microstructural characteristics of adiabatic shear localization in a metastable beta titanium alloy deformed at high strain rate and elevated temperatures. Materials Characterization, 102 7820, 103-113. doi: 10.1016/j.matchar.2015.02.017

Microstructural characteristics of adiabatic shear localization in a metastable beta titanium alloy deformed at high strain rate and elevated temperatures

2015

Journal Article

Evolution of the microstructure and mechanical properties during fabrication of mini-tubes from a biomedical beta-titanium alloy

Zhang, Yaowu, Kent, Damon, Wang, Gui, St John, David and Dargusch, Matthew (2015). Evolution of the microstructure and mechanical properties during fabrication of mini-tubes from a biomedical beta-titanium alloy. Journal of the Mechanical Behavior of Biomedical Materials, 42, 207-218. doi: 10.1016/j.jmbbm.2014.11.013

Evolution of the microstructure and mechanical properties during fabrication of mini-tubes from a biomedical beta-titanium alloy

2015

Journal Article

Grain refinement of commercial pure al treated by Pulsed Magneto-Oscillation on the top surface of melt

Liang, Dong, Liang, Zhu-yuan, Sun, Jie, Zhai, Qi-jie, Gui, Wang and StJohn, David H. (2015). Grain refinement of commercial pure al treated by Pulsed Magneto-Oscillation on the top surface of melt. China Foundry, 12 (1) 1672-6421, 48-53.

Grain refinement of commercial pure al treated by Pulsed Magneto-Oscillation on the top surface of melt

2014

Journal Article

The role of ultrasonic treatment in refining the as-cast grain structure during the solidification of an Al–2Cu alloy

Wang, Gui, Dargusch, M. S., Qian, M., Eskin, D. G. and St John, David H. (2014). The role of ultrasonic treatment in refining the as-cast grain structure during the solidification of an Al–2Cu alloy. Journal of Crystal Growth, 408 (1), 119-124. doi: 10.1016/j.jcrysgro.2014.09.018

The role of ultrasonic treatment in refining the as-cast grain structure during the solidification of an Al–2Cu alloy

2014

Journal Article

Nucleation and grain formation of pure Al under Pulsed Magneto-Oscillation treatment

Liang, Dong, Liang, Zhuyuan, Zhai, Qijie, Wang, Gui and St John, David H. (2014). Nucleation and grain formation of pure Al under Pulsed Magneto-Oscillation treatment. Materials Letters, 130, 48-50. doi: 10.1016/j.matlet.2014.05.058

Nucleation and grain formation of pure Al under Pulsed Magneto-Oscillation treatment

2014

Journal Article

Dry sliding wear behaviour of TiC/Fe composites fabricated by exothermic dispersion of Fe-Ti-C powders

Zhu, H., Hua, B., Huang, J., Li, J., Wang, G. and Xie, Z. (2014). Dry sliding wear behaviour of TiC/Fe composites fabricated by exothermic dispersion of Fe-Ti-C powders. Tribology - Materials, Surfaces and Interfaces, 8 (3), 165-171. doi: 10.1179/1751584X14Y.0000000073

Dry sliding wear behaviour of TiC/Fe composites fabricated by exothermic dispersion of Fe-Ti-C powders

2014

Journal Article

Constitutive modelling of the flow behaviour of a β titanium alloy at high strain rates and elevated temperatures using the Johnson-Cook and modified Zerilli-Armstrong models

Zhan, Hongyi, Wang, Gui, Kent, Damon and Dargusch, Matthew (2014). Constitutive modelling of the flow behaviour of a β titanium alloy at high strain rates and elevated temperatures using the Johnson-Cook and modified Zerilli-Armstrong models. Materials Science and Engineering A, 612, 71-79. doi: 10.1016/j.msea.2014.06.030

Constitutive modelling of the flow behaviour of a β titanium alloy at high strain rates and elevated temperatures using the Johnson-Cook and modified Zerilli-Armstrong models

2014

Journal Article

Surface nanocrystallization of Cu and Ta by sliding friction

Zhang, Y. S., Zhang, P. X., Niu, H. Z., Chen, C., Wang, G., Xiao, D. H., Chen, X. H., Yu, Z. T., Yuan, S. B. and Bai, X. F. (2014). Surface nanocrystallization of Cu and Ta by sliding friction. Materials Science and Engineering A, 607, 351-355. doi: 10.1016/j.msea.2014.03.089

Surface nanocrystallization of Cu and Ta by sliding friction

2014

Journal Article

The dynamic response of a β titanium alloy to high strain rates and elevated temperatures

Zhan, Hongyi, Kent, Damon, Wang, Gui and Dargusch, Matthew S. (2014). The dynamic response of a β titanium alloy to high strain rates and elevated temperatures. Materials Science and Engineering A, 607, 417-426. doi: 10.1016/j.msea.2014.04.028

The dynamic response of a β titanium alloy to high strain rates and elevated temperatures

2014

Journal Article

Reaction mechanism and mechanical properties of an aluminum-based composite fabricated in-situ from Al-SiO2 system

Zhu, Heguo, Dong, Kang, Huang, Jiewen, Li, Jianliang, Wang, Gui and Xie, Zonghan (2014). Reaction mechanism and mechanical properties of an aluminum-based composite fabricated in-situ from Al-SiO2 system. Materials Chemistry and Physics, 145 (3), 334-341. doi: 10.1016/j.matchemphys.2014.02.020

Reaction mechanism and mechanical properties of an aluminum-based composite fabricated in-situ from Al-SiO2 system

2014

Journal Article

SPH/FE modeling of cutting force and chip formation during thermally assisted machining of Ti6Al4V alloy

Xi, Yao, Bermingham, Michael, Wang, Gui and Dargusch, Matthew (2014). SPH/FE modeling of cutting force and chip formation during thermally assisted machining of Ti6Al4V alloy. Computational Materials Science, 84, 188-197. doi: 10.1016/j.commatsci.2013.12.018

SPH/FE modeling of cutting force and chip formation during thermally assisted machining of Ti6Al4V alloy

2014

Journal Article

A study on laser assisted machining of Ti10V2Fe3Al alloy with varying laser power

Rahman Rashid, R. A., Sun, S., Palanisamy, S., Wang, G. and Dargusch, M. S. (2014). A study on laser assisted machining of Ti10V2Fe3Al alloy with varying laser power. International Journal of Advanced Manufacturing Technology, 74 (1-4), 219-224. doi: 10.1007/s00170-014-5958-5

A study on laser assisted machining of Ti10V2Fe3Al alloy with varying laser power

2014

Journal Article

The cold-rolling behaviour of AZ31 tubes for fabrication of biodegradable stents

Zhang, Yaowu, Kent, Damon, Wang, Gui, StJohn, David and Dargusch, Matthew S. (2014). The cold-rolling behaviour of AZ31 tubes for fabrication of biodegradable stents. Journal of the Mechanical Behavior of Biomedical Materials, 39, 292-303. doi: 10.1016/j.jmbbm.2014.07.026

The cold-rolling behaviour of AZ31 tubes for fabrication of biodegradable stents

Funding

Past funding

  • 2017 - 2018
    Development of innovative wound closure devices
    Innovation Connections
    Open grant
  • 2017 - 2018
    Development of design and additive manufacturing solutions for the medical and health industries
    Innovation Connections
    Open grant

Supervision

Availability

Dr Gui Wang is:
Available for supervision

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Supervision history

Current supervision

  • Doctor Philosophy

    Automation of Manufacturing Processes for Custom Made Foot Orthotics

    Principal Advisor

    Other advisors: Professor Martin Veidt

Completed supervision

Media

Enquiries

For media enquiries about Dr Gui Wang's areas of expertise, story ideas and help finding experts, contact our Media team:

communications@uq.edu.au