
Overview
Background
Professor Dargusch is currently the Associate Dean (Research) of UQ's Engineering Faculty and the Chief Technology Officer of the Defence Materials Technology Centre (DMTC). He was the Director and lead CI of the ARC Research Hub for Advanced Manufacturing of Medical Devices, and a CI in the ARC Research Hub for Transforming Australia’s Manufacturing Industry through High-Value Additive Manufacturing. He led an advanced manufacturing program at DMTC from 2008 and has mentored individuals across academia and industry, supervising 40 postgraduate projects to completion, with 8 current students. His former PhD students now hold senior industry roles, and others have become successful academics, including ARC DECRA and Future Fellows and Professors. Matt Dargusch is a Professor in Mechanical and Manufacturing Engineering within the School of Mechanical and Mining Engineering where he was previously the Director of Research and Co-Director of the Centre for Advanced Manufacturing and Materials Processing (AMPAM). Further information about AMPAM can be found on the Centre’s website: http://ampam.mechmining.uq.edu.au/
Prof. Dargusch completed his PhD in 1998 and in the same year he published his first journal paper which ahs been cited more than 1000 times. He has a strong background in working on industry-outcome focussed research. After completing his PhD, he worked in manufacturing and product development in industry before moving being appointed as Program Manager for both the Aerospace and Industry Best Practice Program Manager with the CAST CRC. During his time as program manager the best practice program received a number of awards from the Cooperative Research Centres Association for delivering industry outcomes. Professor Dargusch’s work has been recognised by the star award from the CRC Association for the impact that his work has had in industry. In 2007 Professor Dargusch was a critical member of the successful bid team for a Defence Future Capability Technology Centre (DFCTC) which became the Defence Materials Technology Centre (DMTC) with partners such as BAE Systems, Thales and many SMEs. In 2008, Professor Dargusch became the Chief Technology Officer for the DMTC, a position which he currently still holds. He has led an advanced manufacturing program at DMTC from 2008 and has mentored individuals across academia and industry, supervising 40 postgraduate projects to completion, with 8 current students. His former PhD students now hold senior industry roles, and others have become successful academics, including ARC DECRA and Future Fellows and Professors.
CI Dargusch is recognised as an international expert in materials and manufacturing with over 20 years of research leadership. He is currently Editor of Progress in Materials Science (I.F. 33.6) with two recent Science papers. He was also the lead CI and Director of the very successful ARC Research Hub for Advanced Manufacturing of Medical Devices. He received a 2020 Citation for Outstanding Contributions to Student Learning at the Australian Awards for University Teaching, and he is currently the Associate Dean (Research) of UQ's EAIT Faculty.
The impact of CI Dargusch’s work and contribution to the field of advanced manufacturing has been recognised with the Thatcher Brothers Prize from the Institute of Mechanical Engineers in the UK, The Anders Gustaf Ekberg Prize in 2019, the Technology Award from The Minerals, Metals and Materials Society in 2017, and two papers published in Science and leading manufacturing journals (Int J Mach Tools Manuf (2009) 49, 561-568 and Int J Mach Tools Manuf (2011) 51, 500-511), Additive Manufacturing (Addit Manuf (2022) 59, 103176 and Addit Manuf (2022) 55, 102887); Acta Biomaterialia and Electochemica Acta. He currently has 12 Highly Cited Papers, including one first-author paper in Advanced Science (Adv Sci (2020) 7:18, 2001362) and a corresponding author paper published in Advanced Materials (Impact Factor 32.09) (Adv Mat (2022) 34:41, 2204508), a paper in Progress in Materials Science (Impact Factor 48.16) (Prog Mater Sci (2021) 121, 100840). One of his highly cited papers is the second most cited article in Acta Materialia (Acta Mater (2019) 168, 261-274) published in that year. His high quality work in additive manufacturing has also been published in Nature Communications (Nat Comm (2022) 13:1, 4660) and as corresponding author of a highly cited article published in Science. The impact of his work in advanced manufacturing was recognised by the Star Award from the Cooperative Research Association in 2010 and the “Aerospace Australia Industry SME Innovation Award” in 2010.
CI Dargusch has more than 400 publications with a total citation count of 28254 and h-index of 84 (Google Scholar 11/2024). He has been recognised as one of Elsevier World’s Top 2% Scientists in 2020, 2023, and 2024. His publications have a Field-Weighted Citation Impact (FWCI) of 2.32 (SciVal, 11/2024). He has 12 Highly Cited Papers (papers in the top 1% citation percentile worldwide) (WoS 11/2024). 33% of his publications are in the top 10% citation percentile worldwide, and 55.7% of his publications are in the top 10% journals.
He consistently publishes in high-quality journals in fields directly relevant to the field of this application including Materials Science, Manufacturing, and Energy Materials. He has 50 high-quality publications in the field of metal additive manufacturing alone including 1 in Science (IF=47.73), 1 in Nature Communications (IF=14.7), and 10 in Additive Manufacturing (IF=10.3). He also has a strong track record in energy materials including another article published in Science, 2 in Energy and Environmental Science (IF=32.4), 4 in Advanced Materials (IF=27.4), 2 in Advanced Energy Materials (IF=27.8), 5 Nano Energy (IF=16.8), 1 in Progress in Materials Science (IF=33.6), and 1 in Advanced Science (IF=15.1). His strong background in all three fields provide a solid foundation for this project. Other prestigious journals where he has published include Adv Funct Mater, Acta Mater, Acta Biomater, Biomaterials, Int J Mach Tools Manuf, and Scr Mater.
Prof Dargusch has been successful in obtaining over $10 million in competitive and industry grant funding since 2018 and an additional $2.95 million through the Queensland Government’s Innovation Projects Fund since 2006. He is also a chief investigator on 6 x ARC LPs, 3 x ARC DPs, 2 x ARC ITRH and 7 x ARC LIEF grants and lead investigator on 1 DEST (now DIISR) International Science Linkages Program – Australia-China Special Fund Grant. He was awarded a Smart Future Fund RPP grant of $405,000 as lead investigator for a project focussed on the “Development of Next Generation Endovascular Grafts”(2012-2015). Most recently Professor Dargusch was successful as a CI on a $ 50 Million MRFF Artificial Heart Frontiers Program grant. He has a wide range of industry funded research projects with partners such as Cook Medical, Stryker, Airbus, Boeing and Baosteel.
Prof Dargusch’s ability to transfer research outcomes to industry is provided by the case study on titanium technology submitted by Prof Dargusch as lead investigator to the Excellence in Innovation for Australia trial in 2012. The submission was rated A for outstanding impacts in terms of reach and significance.
Prof. Dargusch’s primary research interests are associated with addressing the major technical challenges facing Australian metal manufacturers in order to assist them to participate more effectively in global supply chains and the development of improved medical devices. His aim is to use his research to impact the ability of Australian companies, to develop and integrate advanced manufacturing technologies particularly in the production of high value components for Aircraft, Maritime and Medical Device applications.
Availability
- Professor Matthew Dargusch is:
- Available for supervision
Fields of research
Qualifications
- Bachelor (Honours) of Science (Advanced), The University of Queensland
Works
Search Professor Matthew Dargusch’s works on UQ eSpace
2021
Journal Article
Hydrogen-induced fast fracture in notched 1500 and 1700 MPa class automotive martensitic advanced high-strength steel
Venezuela, Jeffrey, Hill, Timothy, Zhou, Qingjun, Li, Huixing, Shi, Zhiming, Dong, Futao, Knibbe, Ruth, Zhang, Mingxing, Dargusch, Matthew S. and Atrens, Andrej (2021). Hydrogen-induced fast fracture in notched 1500 and 1700 MPa class automotive martensitic advanced high-strength steel. Corrosion Science, 188 109550, 1-17. doi: 10.1016/j.corsci.2021.109550
2021
Journal Article
A review of the physiological impact of rare earth elements and their uses in biomedical Mg alloys
Weng, Weijie, Biesiekierski, Arne, Li, Yuncang, Dargusch, Matthew and Wen, Cuie (2021). A review of the physiological impact of rare earth elements and their uses in biomedical Mg alloys. Acta Biomaterialia, 130, 80-97. doi: 10.1016/j.actbio.2021.06.004
2021
Journal Article
Impact of scandium on mechanical properties, corrosion behavior, friction and wear performance, and cytotoxicity of a β-type Ti–24Nb–38Zr–2Mo alloy for orthopedic applications
Tong, Xian, Sun, Quanxiang, Zhang, Dechuang, Wang, Kun, Dai, Yilong, Shi, Zimu, Li, Yuncang, Dargusch, Matthew, Huang, Shengbin, Ma, Jianfeng, Wen, Cuie and Lin, Jixing (2021). Impact of scandium on mechanical properties, corrosion behavior, friction and wear performance, and cytotoxicity of a β-type Ti–24Nb–38Zr–2Mo alloy for orthopedic applications. Acta Biomaterialia, 134, 791-803. doi: 10.1016/j.actbio.2021.07.061
2021
Journal Article
Surface coatings for rotary ventricular assist devices: a systematic review
Zhang, Meili, Tansley, Geoffrey D., Dargusch, Matthew S., Fraser, John F. and Pauls, Jo P. (2021). Surface coatings for rotary ventricular assist devices: a systematic review. ASAIO Journal, 68 (5), 623-632. doi: 10.1097/MAT.0000000000001534
2021
Journal Article
Tuning Ta coating properties through chemical and plasma etching pre-treatment of NiTi wire substrates
Pace, Ben, Bendavid, Avi, Ahsan, Mohammed, Dargusch, Matthew, Bhatia, Vijay, Byrnes, Jacob and Cairney, Julie (2021). Tuning Ta coating properties through chemical and plasma etching pre-treatment of NiTi wire substrates. Surface and Coatings Technology, 418 127214, 1-10. doi: 10.1016/j.surfcoat.2021.127214
2021
Journal Article
Characterization of nano precipitate phase in an as-extruded Zn-Cu alloy
Jiang, Jimiao, Huang, Hua, Niu, Jialin, Jin, Zhaohui, Dargusch, Matthew and Yuan, Guangyin (2021). Characterization of nano precipitate phase in an as-extruded Zn-Cu alloy. Scripta Materialia, 200 113907, 1-6. doi: 10.1016/j.scriptamat.2021.113907
2021
Journal Article
High-efficiency thermocells driven by thermo-electrochemical processes
Li, Meng, Hong, Min, Dargusch, Matthew, Zou, Jin and Chen, Zhi-Gang (2021). High-efficiency thermocells driven by thermo-electrochemical processes. Trends in Chemistry, 3 (7), 561-574. doi: 10.1016/j.trechm.2020.11.001
2021
Journal Article
High stability and high strength β-titanium alloys for additive manufacturing
Ng, C. H., Bermingham, M. J., Kent, D. and Dargusch, M. S. (2021). High stability and high strength β-titanium alloys for additive manufacturing. Materials Science and Engineering A, 816 141326, 1-7. doi: 10.1016/j.msea.2021.141326
2021
Journal Article
Mechanisms of the origin of fine and non-dendritic grains at the sonotrode–liquid metal interface during ultrasonic solidification of metals
Balasubramani, Nagasivamuni, Wang, Gui, StJohn, David H. and Dargusch, Matthew S. (2021). Mechanisms of the origin of fine and non-dendritic grains at the sonotrode–liquid metal interface during ultrasonic solidification of metals. Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science, 52 (6), 2676-2688. doi: 10.1007/s11661-021-06264-y
2021
Journal Article
Binary Zn–Ti alloys for orthopedic applications: corrosion and degradation behaviors, friction and wear performance, and cytotoxicity
Wang, Kun, Tong, Xian, Lin, Jixing, Wei, Aiping, Li, Yuncang, Dargusch, Matthew and Wen, Cuie (2021). Binary Zn–Ti alloys for orthopedic applications: corrosion and degradation behaviors, friction and wear performance, and cytotoxicity. Journal of Materials Science and Technology, 74, 216-229. doi: 10.1016/j.jmst.2020.10.031
2021
Journal Article
Structural evolution of high‐performance Mn‐alloyed thermoelectric materials: a case study of SnTe
Sun, Qiang, Chen, Zhi‐Yu, Li, Meng, Shi, Xiao‐Lei, Xu, Sheng‐Duo, Yin, Yu, Dargusch, Matthew, Zou, Jin, Ang, Ran and Chen, Zhi‐Gang (2021). Structural evolution of high‐performance Mn‐alloyed thermoelectric materials: a case study of SnTe. Small, 17 (25) 2100525, 1-10. doi: 10.1002/smll.202100525
2021
Journal Article
Carbon allotrope hybrids advance thermoelectric development and applications
Liu, Wei-Di, Yu, Yao, Dargusch, Matthew, Liu, Qingfeng and Chen, Zhi-Gang (2021). Carbon allotrope hybrids advance thermoelectric development and applications. Renewable and Sustainable Energy Reviews, 141 110800, 110800. doi: 10.1016/j.rser.2021.110800
2021
Journal Article
The influence of Ca and Cu additions on the microstructure, mechanical and degradation properties of Zn–Ca–Cu alloys for absorbable wound closure device applications
Yang, Nan, Balasubramani, Nagasivamuni, Venezuela, Jeffrey, Almathami, Sharifah, Wen, Cuie and Dargusch, Matthew (2021). The influence of Ca and Cu additions on the microstructure, mechanical and degradation properties of Zn–Ca–Cu alloys for absorbable wound closure device applications. Bioactive Materials, 6 (5), 1436-1451. doi: 10.1016/j.bioactmat.2020.10.015
2021
Journal Article
An in vitro evaluation of the hierarchical micro/nanoporous structure of a Ti3Zr2Sn3Mo25Nb alloy after surface dealloying
Wang, Lan, Zhou, Wenhao, Yu, Zhentao, Yu, Sen, Zhou, Lian, Cao, Yemin, Dargusch, Matthew and Wang, Gui (2021). An in vitro evaluation of the hierarchical micro/nanoporous structure of a Ti3Zr2Sn3Mo25Nb alloy after surface dealloying. ACS Applied Materials and Interfaces, 13 (13), 15017-15030. doi: 10.1021/acsami.1c02140
2021
Journal Article
A review on the progress and challenges of binder jet 3D printing of sand moulds for advanced casting
Sivarupan, Tharmalingam, Balasubramani, Nagasivamuni, Saxena, Prateek, Nagarajan, Devarajan, El Mansori, Mohamed, Salonitis, Konstantinos, Jolly, Mark and Dargusch, Matthew S. (2021). A review on the progress and challenges of binder jet 3D printing of sand moulds for advanced casting. Additive Manufacturing, 40 101889, 1-17. doi: 10.1016/j.addma.2021.101889
2021
Journal Article
Simultaneously optimized thermoelectric performance of n-type Cu2Se alloyed Bi2Te3
Chen, Jie, Bao, Deyu, Sun, Qiang, Liu, Wei-Di, Liu, Can, Tang, Jun, Yang, Lei, Zhou, Dali, Dargusch, Matthew S. and Chen, Zhi-Gang (2021). Simultaneously optimized thermoelectric performance of n-type Cu2Se alloyed Bi2Te3. Journal of Solid State Chemistry, 296 121987, 1-7. doi: 10.1016/j.jssc.2021.121987
2021
Journal Article
Biodegradable Zn–3Cu and Zn–3Cu–0.2Ti alloys with ultrahigh ductility and antibacterial ability for orthopedic applications
Lin, Jixing, Tong, Xian, Wang, Kun, Shi, Zimu, Li, Yuncang, Dargusch, Matthew and Wen, Cuie (2021). Biodegradable Zn–3Cu and Zn–3Cu–0.2Ti alloys with ultrahigh ductility and antibacterial ability for orthopedic applications. Journal of Materials Science and Technology, 68, 76-90. doi: 10.1016/j.jmst.2020.06.052
2021
Journal Article
Biodegradable Zn−3Mg−0.7Mg2Si composite fabricated by high-pressure solidification for bone implant applications
Tong, Xian, Cai, Wenhao, Lin, Jixing, Wang, Kun, Jin, Lufan, Shi, Zimu, Zhang, Dechuang, Lin, Jianguo, Li, Yuncang, Dargusch, Matthew and Wen, Cuie (2021). Biodegradable Zn−3Mg−0.7Mg2Si composite fabricated by high-pressure solidification for bone implant applications. Acta Biomaterialia, 123, 407-417. doi: 10.1016/j.actbio.2020.12.059
2021
Journal Article
Eliminating segregation defects during additive manufacturing of high strength β-titanium alloys
Ng, C. H., Bermingham, M. J. and Dargusch, M. S. (2021). Eliminating segregation defects during additive manufacturing of high strength β-titanium alloys. Additive Manufacturing, 39 101855, 1-12. doi: 10.1016/j.addma.2021.101855
2021
Journal Article
Hydrogen-induced delayed fracture of a 1180 MPa martensitic advanced high-strength steel under U-bend loading
Li, Huixing, Venezuela, Jeffrey, Zhou, Qingjun, Luzin, Vladimir, Yan, Ming, Shi, Zhiming, Knibbe, Ruth, Zhang, Mingxing, Dong, Futao, Dargusch, Matthew S. and Atrens, Andrej (2021). Hydrogen-induced delayed fracture of a 1180 MPa martensitic advanced high-strength steel under U-bend loading. Materials Today Communications, 26 101887, 101887. doi: 10.1016/j.mtcomm.2020.101887
Funding
Current funding
Past funding
Supervision
Availability
- Professor Matthew Dargusch is:
- Available for supervision
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Supervision history
Current supervision
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Doctor Philosophy
Self-powered Piezoelectric Biomedical Electronics
Principal Advisor
Other advisors: Dr Jeffrey Venezuela, Dr Yuan Wang
-
Doctor Philosophy
The Optimization of Li-excess Cation Disordered Rock-salt Cathode Materials
Principal Advisor
Other advisors: Professor Lianzhou Wang, Dr Yuan Wang, Dr Tong'en Lin
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Master Philosophy
Additive manufacturing of high-performance alloys
Principal Advisor
-
Doctor Philosophy
Modelling-assisted design of piezoelectric materials and devices for biomedical applications.
Principal Advisor
Other advisors: Dr Yuan Wang
-
Doctor Philosophy
Synthesis of Novel AlN-Al Reinforcement Powders to Enhance Sintering Mechanisms and Mechanical Performance of Al-based Metal Matrix Composite
Associate Advisor
Other advisors: Dr Damon Kent
-
Doctor Philosophy
Synthesis of Novel AlN-Al Reinforcement Powders to Enhance Sintering Mechanisms and Mechanical Performance of Al-based Metal Matrix Composite
Associate Advisor
Other advisors: Dr Damon Kent
-
Doctor Philosophy
Design high-performance fiber-based thermoelectrics for wearable electronics
Associate Advisor
Other advisors: Emeritus Professor Jin Zou, Honorary Professor Zhi-Gang Chen
-
Doctor Philosophy
Optimisation of the mechanical performance of titanium matrix composites in additive manufacturing for biomedical applications.
Associate Advisor
Other advisors: Dr Damon Kent
-
Doctor Philosophy
Development of High-Performance Thermoelectric Materials and Devices for on-chip Applications
Associate Advisor
Other advisors: Emeritus Professor Jin Zou, Honorary Professor Zhi-Gang Chen
-
Doctor Philosophy
Defect Detection in Medical Devices using Machine Learning Strategies
Associate Advisor
-
Doctor Philosophy
Zn based Biodegradable metals for Biomedical application
Associate Advisor
Other advisors: Dr Abdalla Ali, Professor Saso Ivanovski
-
Doctor Philosophy
Towards use-as-manufactured titanium alloys for additive manufacturing
Associate Advisor
Other advisors: Associate Professor Michael Bermingham
-
Doctor Philosophy
Bioresorbable metals as an alternative to titanium for intraoperative vessel ligation
Associate Advisor
Other advisors: Dr Cedryck Vaquette, Professor Saso Ivanovski, Dr Abdalla Ali
-
Doctor Philosophy
Transforming titanium component fabrication with free machining additives
Associate Advisor
Other advisors: Associate Professor Michael Bermingham
-
Doctor Philosophy
The influence of long-term degradation effects on the hydrogen embrittlement of pipeline steels used in hydrogen transportation
Associate Advisor
Other advisors: Emeritus Professor Andrej Atrens, Dr Jeffrey Venezuela
Completed supervision
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2024
Doctor Philosophy
Magnetostatic Modelling based on Deep Learning
Principal Advisor
Other advisors: Associate Professor Michael Bermingham, Dr Steffen Bollmann
-
2023
Doctor Philosophy
Understanding the Factors Influencing the In Vitro Corrosion Behaviour of Biodegradable Zinc
Principal Advisor
Other advisors: Dr Jeffrey Venezuela
-
2023
Doctor Philosophy
Bulk and porous Ti alloys produced by selective laser melting for biomedical applications
Principal Advisor
Other advisors: Professor Vincent Wheatley
-
2023
Doctor Philosophy
Novel zinc-nutrient elements-based alloys for absorbable wound closure device fabrication
Principal Advisor
Other advisors: Dr Jeffrey Venezuela
-
2022
Doctor Philosophy
Investigating the Formation and Growth of in situ TiB in Titanium Matrix Composites
Principal Advisor
Other advisors: Emeritus Professor Jin Zou
-
2022
Doctor Philosophy
Smart Manufacturing based on Dynamic Value Stream Mapping and Interoperability
Principal Advisor
-
2022
Doctor Philosophy
Development of novel aluminium-vanadium-free titanium alloys for biomedical and healthcare applications
Principal Advisor
Other advisors: Dr Damon Kent
-
2021
Doctor Philosophy
Grain refinement mechanisms during ultrasonic solidification of metals
Principal Advisor
-
2020
Doctor Philosophy
Chemical solutions for tailoring titanium crystallization
Principal Advisor
Other advisors: Associate Professor Michael Bermingham
-
2020
Doctor Philosophy
Additive Manufacturing and Mechanical Properties of Titanium Lattices for Biomedical Applications
Principal Advisor
Other advisors: Professor Martin Veidt
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2017
Master Philosophy
Understanding the effect of external fields during the solidification of the Al-Mg series alloys
Principal Advisor
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2013
Master Philosophy
Gas evolution and Condensates: Analysis of Gas evolution & Condensates from Greensand Moulds
Principal Advisor
Other advisors: Dr Stuart McDonald
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2011
Doctor Philosophy
The Metallurgy of Commercially Pure Titanium Alloys Welded with a Pulsed Laser Beam
Principal Advisor
-
2010
Master Philosophy
The Effects of Varying Die Coating and Casting Volume on Heat Transfer in Aluminium Gravity Die Casting
Principal Advisor
-
2010
Doctor Philosophy
Grain Refinement of Cast Titanium Alloys
Principal Advisor
Other advisors: Dr Stuart McDonald
-
2007
Doctor Philosophy
Role of casting/mold interface in die casting on the thermal behaviour of the die and solidification of casting
Principal Advisor
-
2006
Master Philosophy
POROSITY REDUCTION IN HIGH PRESSURE DIE CASTING THROUGH THE USE OF SQUEEZE PINS
Principal Advisor
-
2016
Doctor Philosophy
Mechanical and Microstructural Characterisation in the Processing of Biomedical Metallic Fine Tubes
Joint Principal Advisor
Other advisors: Dr Damon Kent
-
2025
Doctor Philosophy
Synthesis of Novel AlN-Al Reinforcement Powders to Enhance Sintering Mechanisms and Mechanical Performance of Al-based Metal Matrix Composite
Associate Advisor
Other advisors: Dr Damon Kent
-
2024
Doctor Philosophy
Development of new generation materials for application in medical devices
Associate Advisor
Other advisors: Dr Jeffrey Venezuela
-
2023
Master Philosophy
Grain Refinement and Defect Mitigation of Aluminium Alloys Produced by Wire Arc Additive Manufacturing
Associate Advisor
Other advisors: Associate Professor Michael Bermingham
-
2023
Doctor Philosophy
Wire Arc Additive Manufacturing of Metastable ß-Ti Alloys
Associate Advisor
Other advisors: Associate Professor Michael Bermingham
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2023
Doctor Philosophy
Design, manufacturing, and evaluations of biodegradable metal mesh implant for pelvic floor reconstructions
Associate Advisor
Other advisors: Dr Jeffrey Venezuela, Emeritus Professor Andrej Atrens
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2022
Doctor Philosophy
High-performance GeTe Thermoelectrics for Generation and Refrigeration
Associate Advisor
Other advisors: Honorary Professor Zhi-Gang Chen
-
2022
Doctor Philosophy
Deformation Behaviors of Zn and Zn-Mg Alloys during Plastic Deformation
Associate Advisor
Other advisors: Dr Damon Kent
-
2021
Doctor Philosophy
High performance flexible thermoelectric materials and their device design
Associate Advisor
Other advisors: Emeritus Professor Jin Zou, Honorary Professor Zhi-Gang Chen
-
2021
Doctor Philosophy
Design and Tailoring of Additively Manufactured Titanium and Titanium Alloys by Laser Powder Bed Fusion
Associate Advisor
Other advisors: Professor Mingxing Zhang
-
2020
Doctor Philosophy
Selective Laser Melting Novel Biodegradable Iron-Based Bone Scaffolds for Load-bearing Applications
Joint Principal Advisor
Other advisors: Associate Professor Michael Bermingham
-
2020
Doctor Philosophy
Temporary Corrosion Protection of a New Generation of Magnesium Alloys
Associate Advisor
Other advisors: Emeritus Professor Andrej Atrens
-
2019
Master Philosophy
Effect Of Alloy Composition On The Microstructure Of Titanium Alloys Produced By Wire & Arc Additive Manufacturing
Associate Advisor
Other advisors: Associate Professor Michael Bermingham
-
2019
Doctor Philosophy
The manufacture of PHBV and PHBV/Akermanite composite scaffolds using selective laser sintering
Associate Advisor
-
2019
Doctor Philosophy
Exploring Magnesium Corrosion in a Medical Environment
Associate Advisor
Other advisors: Emeritus Professor Andrej Atrens
-
2016
Doctor Philosophy
A Computational Investigation of Failure Modes in Hybrid Titanium Composite Laminates
Associate Advisor
Other advisors: Associate Professor Lutz Gross, Professor Martin Veidt
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2016
Doctor Philosophy
The Dynamic Response of ß Titanium Alloys to High Strain Rates at Room and Elevated Temperatures
Associate Advisor
Other advisors: Dr Damon Kent
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