
Overview
Background
Dr. Mingyuan Lu was awarded her PhD from The University of Queensland in Febuary 2014. She has previously completed a Masters of Engineering (June 2009, Materials Science and Engineering, Central South University, China), and a Bachelor of Engineering (June 2007, Materials Science and Engineering, Central south University, China).
Mingyuan has more than 10 years’ experience in research, and during this period she has gained extensive experience with material synthesis, mechanical mechanics, and material characterization including nanoindentation, nanoscratching, atomic force microscopy, electron microscopy, and focused ion beam milling (FIB); additionally,she has experience with structural and compositional analysis techniques (Raman, XRD, EDS, DTA, DSC etc.).
Mingyuan's contributions to the field of mechanical and materials engineering are listed below:
Materials mechanics
- (2015-2016) developed a new and successful FIB-machined micro-cantilever bending technique to study the fracture and interfacial properties of the protective intermetallic coatings on magnesium alloys: this technique can be applied to a wide range of materials, sub-surface structures and multilayered structures. Based on this methodology, they later developed a micro-bridge four-point bending technique. This approach can generate a “stable” interfacial delamination, and thus enables quantitative analysis of interfacial toughness.
- (2011-2014) developed an indentation-based methodology for assessing the interfacial adhesion of bilayer structures, in a joint project that was funded by WIN Semiconductor Co., Taiwan: the methodology developed has been used to test the reliability of SiN-passivated GaAs semiconductor wafer products.
Materials synthesis and processing
- (2015-current) developing a selective laser sintering process for the additive manufacturing of porous and biodegradable scaffolds, made from a biopolymer, for bone tissue engineering: this innovative process can produce scaffolds without the use of an artificial 3D model, and the scaffold has a unique interconnected pore architecture and large surface area making it suitable for bone tissue regeneration applications. The promising outcomes of the preliminary study have elicited strong support from UQ; it has received two generous internal grants (a philanthropic grant for an ECR in the field of engineering, and SEED funding) to enable further study in this field. The scaffolds will shortly be tested in a pre-clinical mouse model (funded by SEEM grant) to study biocompatibility and osteoconductivity.
- (2007-2009) developed high-performance refractory metallic materials using powder metallurgy processes: in this project, they discovered the effect of trace TiC, ZrC Carbide nanoparticles on the mechanical properties, sintering behaviour and microstructure of molybdenum alloys.
Availability
- Dr Mingyuan Lu is:
- Available for supervision
Fields of research
Research interests
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Laser deposition of titanium oxide on titanium alloy components for aerospace applications
Surface modification is crucial for the design of high-value Ti parts with excellent tribological properties and will be developed into a major genre of technologies within the foreseeable future. This project aims to develop an innovative laser-based coating technology to deposit thick, dense and well adhered TiO2 protective coatings on a contoured surface of Ti alloy components. It addresses the issue of the current lack of surface modification techniques that are capable of depositing robust wear-resistant coatings on Ti alloys, which has limited the development of high-value Ti parts for aerospace applications. The outcome of the project will drive the design and production of durable Ti alloy aircraft components and will support the development of processes that will create high value manufacturing products.
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Additive manufacturing of biodegradable porous polymer and bioceramic-polymer composite scaffolds for bone tissue engineering
Additive manufacturing (AM) technologies has enabled the fabrication of scaffolds with a highly complex and completely interconnected pore network. This project aims to develop new AM processes for porous bio-polymer and bio-composite scaffolds for tissue engineering (TE) applications using novel powder formulations. Among various AM techniques, selective laser sintering (SLS) is used for producing TE scaffolds due to its ability to process a wide range of bio-engineering materials. In a SLS process, powder particles are selectively fused together with a focused laser beam in a layer-by-layer fashion based on the computer aided design (CAD) model of the part. The outcome of this project will lead to innovative SLS processes that would power new manufacturing industries for producing high value and innovative parts for bio-medical application.
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Additive manufacturing (AM) of advanced ceramics
Currently available additive manufacturing processes have not yet been able to successfully produce full density and defeat-free ceramic parts. This project aims to understand the fundamental mechanisms involved in the selective laser sintering and selective laser melting (SLM) of ceramic materials. In this project, systematic investigation is carried out to understand the interactions between materials, process parameters, properties and surface/structure integrity involved in the ceramic SLM process.
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Characterising interfacial adhesion at nano and micro-scale using innovative testing methodologies
Interfacial adhesion is a critical property that can influence the reliability of flexible microelectronic devices, such as roll-up displays, wearable smart devices, flexible sensors and solar cells. The current design of film stacking sequence in the microelectronics devices is determined by the electrical and optical functionality and not necessarily optimized for mechanical performance. Failure often occurs at the interfaces between dissimilar layers, when the device is subjected to external loading. To improve the device reliability, characterization of the interfacial property is imperative. The current lack of reliable methods available to assess the interfacial adhesion of a complex multilayered structure in a small-scale integrated system has limited the development of the next-generation flexible microelectronic devices. This research is to develop reliable quantitative methodologies for measuring interfacial adhesion under a simulated stress state that is pertinent to the actual service condition in order to develop predictive models for delamination and interface degradation. The methodologies developed in this project are intended for the typical multilayer structures found in the contemporary flexible and stretchable microelectronics. However, these techniques, once developed, can be readily applied to characterise the mechanical properties of diverse materials and structures at nano- and micro-scale, such as adhesion of the interfaces/interphases in protective coatings on metal substrates, composite materials, solder and weld joints, the stiffness and strength of structs and fibres in cellular materials and biomaterials, as well as the inter-layer adhesion of parts fabricated using additive manufacturing techniques.
Works
Search Professor Mingyuan Lu’s works on UQ eSpace
2022
Journal Article
Adhesion evaluation of an embedded SiN/GaAs interface using a novel “push-out” technique
Dehkhoda, Sahar, Lu, Mingyuan and Huang, Han (2022). Adhesion evaluation of an embedded SiN/GaAs interface using a novel “push-out” technique. Micromachines, 14 (1) 37, 1-11. doi: 10.3390/mi14010037
2022
Journal Article
Tribological performance of zeolite/sodium dodecylbenzenesulfonate hybrid water-based lubricants
Lin, Chih-Ling, Lin, Weikang, Huang, Shuiquan, Edwards, Grant, Lu, Mingyuan and Huang, Han (2022). Tribological performance of zeolite/sodium dodecylbenzenesulfonate hybrid water-based lubricants. Applied Surface Science, 598 153764, 153764. doi: 10.1016/j.apsusc.2022.153764
2022
Journal Article
Size- and temperature-dependent Young's modulus of individual ZnS nanobelts
Ma, Liang, Jiang, Yijun, Dai, Guozhang, Mead, James L., Yibibulla, Tursunay, Lu, Mingyuan, Huang, Han, Fatikow, Sergej and Wang, Shiliang (2022). Size- and temperature-dependent Young's modulus of individual ZnS nanobelts. Journal of Physics D: Applied Physics, 55 (36) 364001, 1-8. doi: 10.1088/1361-6463/ac78a0
2022
Journal Article
Coordination chemistry engineered polymeric carbon nitride photoanode with ultralow onset potential for water splitting
Fan, Xiangqian, Wang, Zhiliang, Lin, Tongen, Du, Du, Xiao, Mu, Chen, Peng, Monny, Sabiha Akter, Huang, Hengming, Lyu, Miaoqiang, Lu, Mingyuan and Wang, Lianzhou (2022). Coordination chemistry engineered polymeric carbon nitride photoanode with ultralow onset potential for water splitting. Angewandte Chemie, 134 (32), 1-6. doi: 10.1002/ange.202204407
2022
Journal Article
Coordination chemistry engineered polymeric carbon nitride photoanode with ultralow onset potential for water splitting
Fan, Xiangqian, Lin, Tongen, Wang, Zhiliang, Du, Du, Xiao, Mu, Chen, Peng, Monny, Sabiha Akter, Huang, Hengming, Lyu, Miaoqiang, Lu, Mingyuan and Wang, Lianzhou (2022). Coordination chemistry engineered polymeric carbon nitride photoanode with ultralow onset potential for water splitting. Angewandte Chemie International Edition, 61 (32) e202204407, 1-7. doi: 10.1002/anie.202204407
2022
Journal Article
Threshold damage mechanisms in brittle solids and their impact on advanced technologies
Lawn, Brian R., Huang, Han, Lu, Mingyuan, Borrero-López, Óscar and Zhang, Yu (2022). Threshold damage mechanisms in brittle solids and their impact on advanced technologies. Acta Materialia, 232 117921, 117921. doi: 10.1016/j.actamat.2022.117921
2022
Journal Article
In vitro evaluation of porous poly(hydroxybutyrate-co-hydroxyvalerate)/akermanite composite scaffolds manufactured using selective laser sintering
Gómez-Cerezo, Maria Natividad, Patel, Rushabh, Vaquette, Cedryck, Grøndahl, Lisbeth and Lu, Mingyuan (2022). In vitro evaluation of porous poly(hydroxybutyrate-co-hydroxyvalerate)/akermanite composite scaffolds manufactured using selective laser sintering. Biomaterials Advances, 135 212748, 212748. doi: 10.1016/j.bioadv.2022.212748
2022
Journal Article
Interfacial adhesion assessment of SiN/GaAs film/substrate system using microcantilever bending technique
Lin, Weikang, Zhao, Yitian, Wang, Feng, Huang, Han and Lu, Mingyuan (2022). Interfacial adhesion assessment of SiN/GaAs film/substrate system using microcantilever bending technique. Journal of Physics D: Applied Physics, 55 (24) 245104, 1-9. doi: 10.1088/1361-6463/ac5da4
2022
Journal Article
Effect of lycopene on the growth performance, antioxidant enzyme activity, and expression of gene in the Keap1-Nrf2 signaling pathway of arbor acres broilers
Wang, Sibo, Wu, Hongzhi, Zhu, Yunhui, Cui, Hongxia, Yang, Ji, Lu, Mingyuan, Cheng, Huangzuo, Gu, Lihong, Xu, Tieshan and Xu, Li (2022). Effect of lycopene on the growth performance, antioxidant enzyme activity, and expression of gene in the Keap1-Nrf2 signaling pathway of arbor acres broilers. Frontiers in Veterinary Science, 9 833346. doi: 10.3389/fvets.2022.833346
2022
Journal Article
Temperature and size dependent mechanical properties of vapor synthesized zinc tungstate nanowires
Ma, Liang, Yibibulla, Tursunay, Jiang, Yijun, Mead, James L., Lu, Mingyuan, Wang, Shiliang and Huang, Han (2022). Temperature and size dependent mechanical properties of vapor synthesized zinc tungstate nanowires. Physica E: Low-Dimensional Systems and Nanostructures, 136 114990, 114990. doi: 10.1016/j.physe.2021.114990
2022
Journal Article
The enhanced confinement effect of double shell hollow mesoporous spheres assembled with nitrogen-doped copper cobaltate nanoparticles for enhancing lithium-sulfur batteries
Pu, Jun, Han, Mengting, Wang, Tao, Zhu, Xiaomei, Lu, Mingyuan, Chen, Jiaxu, Liu, Wen, Dai, Yang and Tan, Yun (2022). The enhanced confinement effect of double shell hollow mesoporous spheres assembled with nitrogen-doped copper cobaltate nanoparticles for enhancing lithium-sulfur batteries. Electrochimica Acta, 404 139597. doi: 10.1016/j.electacta.2021.139597
2021
Journal Article
Laser gas alloying of Ti-6Al-4V in air for tribological applications
Zhao, Yitian, Lu, Mingyuan, Yin, Yu, Lin, Weikang and Huang, Han (2021). Laser gas alloying of Ti-6Al-4V in air for tribological applications. Applied Surface Science, 570 151125. doi: 10.1016/j.apsusc.2021.151125
2021
Journal Article
Liquid-phase sintering of lead halide perovskites and metal-organic framework glasses
Hou, Jingwei, Chen, Peng, Shukla, Atul, Krajnc, Andraž, Wang, Tiesheng, Li, Xuemei, Doasa, Rana, Tizei, Luiz H. G., Chan, Bun, Johnstone, Duncan N., Lin, Rijia, Schülli, Tobias U., Martens, Isaac, Appadoo, Dominique, Ari, Mark S’, Wang, Zhiliang, Wei, Tong, Lo, Shih-Chun, Lu, Mingyuan, Li, Shichun, Namdas, Ebinazar B., Mali, Gregor, Cheetham, Anthony K., Collins, Sean M., Chen, Vicki, Wang, Lianzhou and Bennett, Thomas D. (2021). Liquid-phase sintering of lead halide perovskites and metal-organic framework glasses. Science, 374 (6567), 621-625. doi: 10.1126/science.abf4460
2021
Journal Article
Corrigendum to Hydrolytic degradation of porous poly(hydroxybutyrate-co-hydroxyvalerate) scaffolds manufactured using selective laser sintering Polymer Degradation and Stability 187 (2021) (Polymer Degradation and Stability (2021) 187, (S0141391021000653), (10.1016/j.polymdegradstab.2021.109545))
Patel, Rushabh, Monticone, Davide, Lu, Mingyuan, Grøndahl, Lisbeth and Huang, Han (2021). Corrigendum to Hydrolytic degradation of porous poly(hydroxybutyrate-co-hydroxyvalerate) scaffolds manufactured using selective laser sintering Polymer Degradation and Stability 187 (2021) (Polymer Degradation and Stability (2021) 187, (S0141391021000653), (10.1016/j.polymdegradstab.2021.109545)). Polymer Degradation and Stability, 190 109649, 1-2. doi: 10.1016/j.polymdegradstab.2021.109649
2021
Journal Article
Hydrolytic degradation of porous poly(hydroxybutyrate-co-hydroxyvalerate) scaffolds manufactured using selective laser sintering
Patel, Rushabh, Monticone, Davide, Lu, Mingyuan, Grøndahl, Lisbeth and Huang, Han (2021). Hydrolytic degradation of porous poly(hydroxybutyrate-co-hydroxyvalerate) scaffolds manufactured using selective laser sintering. Polymer Degradation and Stability, 187 109545, 1-10. doi: 10.1016/j.polymdegradstab.2021.109545
2021
Journal Article
Interfacial and tribological properties of laser deposited TiOxNy/Ti composite coating on Ti alloy
Zhao, Yitian, Fan, Zhiqi, Tan, Qiyang, Yin, Yu, Lu, Mingyuan and Huang, Han (2021). Interfacial and tribological properties of laser deposited TiOxNy/Ti composite coating on Ti alloy. Tribology International, 155 106758, 1-9. doi: 10.1016/j.triboint.2020.106758
2021
Journal Article
Temperature coefficient of Young’s modulus of silver microwhiskers determined by a laser Doppler vibration measurement
Jiang, Yijun, Lu, Mingyuan, Wang, Shiliang and Huang, Han (2021). Temperature coefficient of Young’s modulus of silver microwhiskers determined by a laser Doppler vibration measurement. Modern Physics Letters B, 35 (21) 2150350, 1-11. doi: 10.1142/s0217984921503504
2020
Journal Article
Tib nanowhisker reinforced titanium matrix composite with improved hardness for biomedical applications
Otte, Joseph A., Zou, Jin, Patel, Rushabh, Lu, Mingyuan and Dargusch, Matthew S. (2020). Tib nanowhisker reinforced titanium matrix composite with improved hardness for biomedical applications. Nanomaterials, 10 (12) 2480, 1-11. doi: 10.3390/nano10122480
2020
Journal Article
Laser deposition of wear-resistant titanium oxynitride/titanium composite coatings on Ti-6Al-4V alloy
Zhao, Yitian, Lu, Mingyuan, Fan, Zhiqi, Huang, Shuiquan and Huang, Han (2020). Laser deposition of wear-resistant titanium oxynitride/titanium composite coatings on Ti-6Al-4V alloy. Applied Surface Science, 531 147212. doi: 10.1016/j.apsusc.2020.147212
2020
Journal Article
Deformation and fracture behaviours of a YAG single crystal characterized using nanoindentation method
Du, Du, Wu, Yueqin, Zhao, Yitian, Lu, Mingyuan and Huang, Han (2020). Deformation and fracture behaviours of a YAG single crystal characterized using nanoindentation method. Materials Characterization, 164 110302, 110302. doi: 10.1016/j.matchar.2020.110302
Funding
Current funding
Past funding
Supervision
Availability
- Dr Mingyuan Lu is:
- Available for supervision
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Supervision history
Current supervision
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Doctor Philosophy
Tribological Behavior of Water Lubricant Using Nanocomposites as Additives
Principal Advisor
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Doctor Philosophy
Fabrication and Mechanical Characterization of Scratch-resistant Polyester-based Nanocomposite Coatings
Principal Advisor
Other advisors: Professor Lisbeth Grondahl
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Doctor Philosophy
Ductile grinding mechanism and technology of brittle solids
Principal Advisor
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Doctor Philosophy
Developing micromechanical testing protocols for bilayer and multilayer nanocomposite coatings
Principal Advisor
Other advisors: Professor Lisbeth Grondahl
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Doctor Philosophy
Failure mechanisms in multilayered flexible structures with blanket films and island structures under mechanical stress
Principal Advisor
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Doctor Philosophy
Surface modification of biodegradable scaffolds for bone tissue engineering application
Principal Advisor
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Doctor Philosophy
Failure mechanisms in multilayered flexible structures with blanket films and island structures under mechanical stress
Principal Advisor
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Doctor Philosophy
Evaluating the Interfacial Adhesion of multilayer systems using novel micro-mechanical testing protocols
Principal Advisor
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Doctor Philosophy
Developing a new and efficient lapping process for brittle and hard materials
Principal Advisor
Other advisors: Professor Lisbeth Grondahl
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Doctor Philosophy
Surface modification of biodegradable scaffolds for bone tissue engineering application
Principal Advisor
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Doctor Philosophy
Understanding Rock-Fluids Interaction in Shale Gas Reservoirs
Associate Advisor
Other advisors: Associate Professor Zhongwei Chen
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Doctor Philosophy
Proppant Embedment and Its Impact on Shale Permeability
Associate Advisor
Other advisors: Associate Professor Zhongwei Chen
Completed supervision
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2023
Doctor Philosophy
In vitro evaluation of porous PHBV-based scaffolds for tissue regeneration application
Principal Advisor
Other advisors: Dr Shakes Chandra
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2024
Doctor Philosophy
Ductile grinding mechanism of brittle single crystal materials
Associate Advisor
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2021
Doctor Philosophy
Water-based hybrid nanosuspensions for abrasive machining of brittle solids
Associate Advisor
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2021
Doctor Philosophy
Laser Surface Engineering of Ti alloys for Tribological Applications
Associate Advisor
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2020
Doctor Philosophy
Laser based additive manufacturing of advanced structural ceramics
Associate Advisor
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2020
Master Philosophy
Investigation of Mechanical Properties and Deformation Mechanism of YAG single crystal by Nanoindentation and Nanoscratch
Associate Advisor
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2019
Master Philosophy
Performance evaluation of nanocoolants in the grinding of semiconductor substrates
Associate Advisor
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