Overview
Background
Dr. Milad Bazli is an Associate Professor in the Faculty of Science and Technology at Charles Darwin University and holds an Honorary Senior Lecturer position at the School of Mechanical and Mining Engineering, University of Queensland. His research focuses on advanced composite manufacturing, durability performance, and sustainable construction materials. He has been recognised in the Stanford/Elsevier Top 2% Scientists List.
Dr. Bazli earned his PhD from Monash University, completing it in 2.4 years, and was awarded the prestigious Best PhD Thesis in Civil Engineering (Mollie Holman Medal Nominee). Over the past five years, he has secured more than $4.5M in external funding as a Chief Investigator.
Availability
- Dr Milad Bazli is:
- Available for supervision
Qualifications
- Doctor of Philosophy, Monash University
Works
Search Professor Milad Bazli’s works on UQ eSpace
2025
Journal Article
Interpretable machine learning models for predicting flexural bond strength between FRP/steel bars and concrete
Ebrahimzadeh, Mohsen, Mahmoudian, Alireza, Tajik, Nima, Taleshi, Mostafa Mohammadzadeh, Ashtari, Mehrdad, Shakiba, Milad and Bazli, Milad (2025). Interpretable machine learning models for predicting flexural bond strength between FRP/steel bars and concrete. Structures, 74 108587, 108587. doi: 10.1016/j.istruc.2025.108587
2025
Journal Article
Cyclic performance of GFRP-reinforced seawater sea-sand concrete culverts reinforced with synthetic fibers
Mashayekhi, Amirhesam, Hassanli, Reza, Zhuge, Yan, Ma, Xing, Chow, Christopher W. K., Bazli, Milad and Manalo, Allan (2025). Cyclic performance of GFRP-reinforced seawater sea-sand concrete culverts reinforced with synthetic fibers. Structures, 72 108262, 108262. doi: 10.1016/j.istruc.2025.108262
2025
Journal Article
Flexural properties of additively manufactured continuous fibre reinforced thermoplastic polymers after exposure to elevated temperatures
Rogha, Ebrahim, Bazli, Milad, Kshetri, Amrit, Shakiba, Milad, Rajabipour, Ali, Hassanli, Reza, Ojo, Caleb O. and Campbell, Hamish (2025). Flexural properties of additively manufactured continuous fibre reinforced thermoplastic polymers after exposure to elevated temperatures. Composites Communications, 54 102279. doi: 10.1016/j.coco.2025.102279
2025
Journal Article
Enhancing compressive behaviour of seawater sea sand concrete filled hybrid carbon-glass FRP tubes exposed to seawater: Effect of thickness
Thapa, Sunil, Bazli, Milad, Ho, Tuong, Le, Anh, Rajabipour, Ali and Hassanli, Reza (2025). Enhancing compressive behaviour of seawater sea sand concrete filled hybrid carbon-glass FRP tubes exposed to seawater: Effect of thickness. Engineering Structures, 322 119052, 1-19. doi: 10.1016/j.engstruct.2024.119052
2025
Journal Article
Beam-column connections in GFRP-RC moment resisting frames: a review of seismic behaviour and key parameters
El-Naqeeb, Mohamed H., Hassanli, Reza, Zhuge, Yan, Ma, Xing, Bazli, Milad and Manalo, Allan (2025). Beam-column connections in GFRP-RC moment resisting frames: a review of seismic behaviour and key parameters. Structures, 71 108109, 108109. doi: 10.1016/j.istruc.2024.108109
2024
Journal Article
Enhancing adhesion of carbon-glass hybrid fibre-reinforced polymer tubes to seawater sea sand concrete through surface sand coating
Subedi, Jivan, Glinatsis, Nicholas, Bazli, Milad, Rajabipour, Ali, Hadigheh, Ali, Hassanli, Reza and Arashpour, Mehrdad (2024). Enhancing adhesion of carbon-glass hybrid fibre-reinforced polymer tubes to seawater sea sand concrete through surface sand coating. Materials and Structures, 57 (10) 242. doi: 10.1617/s11527-024-02521-9
2024
Journal Article
Structural behaviour of small GFRP-reinforced seawater sea-sand fiber reinforced concrete culverts
Mashayekhi, Amirhesam, Hassanli, Reza, Zhuge, Yan, Ma, Xing, Chow, Christopher W.K., Bazli, Milad and Manalo, Allan (2024). Structural behaviour of small GFRP-reinforced seawater sea-sand fiber reinforced concrete culverts. Structures, 69 107492, 1-17. doi: 10.1016/j.istruc.2024.107492
2024
Journal Article
Cyclic flexural performance of seawater sea-sand concrete reinforced with hybrid fibers
Mashayekhi, Amirhesam, Hassanli, Reza, Zhuge, Yan, Ma, Xing, Chow, Christopher W.K., Bazli, Milad and Manalo, Allan (2024). Cyclic flexural performance of seawater sea-sand concrete reinforced with hybrid fibers. Construction and Building Materials, 449 138480. doi: 10.1016/j.conbuildmat.2024.138480
2024
Journal Article
Bond performance between sand coated hybrid glass-carbon FRP tubes and seawater sea sand concrete after exposure to elevated temperatures
Subedi, Jivan, Wu, Yifan, Bazli, Milad, Rajabipour, Ali, Hassanli, Reza and Shahbazi, Ramin (2024). Bond performance between sand coated hybrid glass-carbon FRP tubes and seawater sea sand concrete after exposure to elevated temperatures. Construction and Building Materials, 446 137984, 137984. doi: 10.1016/j.conbuildmat.2024.137984
2024
Journal Article
Synergistic effects of fiber hybridization on the fracture toughness of seawater sea-sand concrete
Mashayekhi, Amirhesam, Hassanli, Reza, Zhuge, Yan, Ma, Xing, Chow, Christopher W. K., Bazli, Milad and Manalo, Allan (2024). Synergistic effects of fiber hybridization on the fracture toughness of seawater sea-sand concrete. Construction and Building Materials, 444 137845. doi: 10.1016/j.conbuildmat.2024.137845
2024
Journal Article
Mixed reality-based approach for minimizing time uncertainty in prefabrication
Sandagomika, Helamini, Shringi, Ankit, Mohandes, Saeed Reza, Kineber, Ahmed Farouk, Bazli, Milad and Arashpour, Mehrdad (2024). Mixed reality-based approach for minimizing time uncertainty in prefabrication. Journal of Construction Engineering and Management, 150 (11) 04024147, 1-14. doi: 10.1061/JCEMD4.COENG-14846
2024
Journal Article
Tensile strength retention of fibre-reinforced polymer composites exposed to elevated temperatures: A meta-analysis review
Machello, Chiara, Bazli, Milad, Santos, Josiah, Rajabipour, Ali, Arashpour, Mehrdad and Hassanli, Reza (2024). Tensile strength retention of fibre-reinforced polymer composites exposed to elevated temperatures: A meta-analysis review. Construction and Building Materials, 438 137150, 137150. doi: 10.1016/j.conbuildmat.2024.137150
2024
Journal Article
Optimising compressive strength properties of seawater sea sand concrete-filled hybrid carbon-glass fibre-reinforced tubes: A study on the impact of layer sequencing
Thapa, Sunil, Huang, Zhongkuang, Bazli, Milad, Rajabipour, Ali, Dong, Zhiqiang, Hassanli, Reza and Arashpour, Mehrdad (2024). Optimising compressive strength properties of seawater sea sand concrete-filled hybrid carbon-glass fibre-reinforced tubes: A study on the impact of layer sequencing. Construction and Building Materials, 438 137155, 137155. doi: 10.1016/j.conbuildmat.2024.137155
2024
Journal Article
Data-driven PM2.5 exposure prediction in wildfire-prone regions and respiratory disease mortality risk assessment
Khanmohammadi, Sadegh, Arashpour, Mehrdad, Bazli, Milad and Farzanehfar, Parisa (2024). Data-driven PM2.5 exposure prediction in wildfire-prone regions and respiratory disease mortality risk assessment. Fire, 7 (8) 277, 277. doi: 10.3390/fire7080277
2024
Journal Article
Investigation of punching shear performance in concrete slabs reinforced with GFRP and synthetic fibers: an experimental study
Hassanli, Reza, Youssf, Osama, El-Naqeeb, Mohamed H., Yekrangnia, Mohammad, Elchalakani, Mohamed, Ghanbari-Ghazijahani, Tohid and Bazli, Milad (2024). Investigation of punching shear performance in concrete slabs reinforced with GFRP and synthetic fibers: an experimental study. Engineering Structures, 311 118215, 1-14. doi: 10.1016/j.engstruct.2024.118215
2024
Journal Article
Effect of ductility of flush end-plate connections on the behaviour of MRFs under fire conditions: An experimental study
Khonsari, Seyed Vahid, Bazli, Milad, Jafari, Armin and Mohammadi, Mirmohammad (2024). Effect of ductility of flush end-plate connections on the behaviour of MRFs under fire conditions: An experimental study. Engineering Structures, 311 117977, 117977. doi: 10.1016/j.engstruct.2024.117977
2024
Journal Article
Experimental study on seismic performance of squat RC shear walls reinforced with hybrid steel and GFRP rebars
Hosseini, Seyed Mohammad, Yekrangnia, Mohammad, Shakiba, Milad, Bazli, Milad and Oskouei, Asghar Vatani (2024). Experimental study on seismic performance of squat RC shear walls reinforced with hybrid steel and GFRP rebars. Structures, 64 106487, 106487. doi: 10.1016/j.istruc.2024.106487
2024
Journal Article
Strength and erosion resistance of spinifex fibre reinforced mudbrick
Guo, Dongxiu, Rajabipour, Ali, Bazli, Milad, Kutay, Cat, Sumanasena, Varuna and Pham, Truong Nhat Phuong (2024). Strength and erosion resistance of spinifex fibre reinforced mudbrick. Fibers, 12 (5) 39, 39. doi: 10.3390/fib12050039
2024
Journal Article
Performance of GFRP-RC precast cap beam to column connections with epoxy-anchored reinforcement: a numerical study
El-Naqeeb, Mohamed H., Hassanli, Reza, Zhuge, Yan, Ma, Xing, Bazli, Milad and Manalo, Allan (2024). Performance of GFRP-RC precast cap beam to column connections with epoxy-anchored reinforcement: a numerical study. Archives of Civil and Mechanical Engineering, 24 (2) 131. doi: 10.1007/s43452-024-00946-1
2024
Journal Article
FRP bar and concrete bond durability in seawater: a meta-analysis review on degradation process, effective parameters, and predictive models
Machello, Chiara, Bazli, Milad, Rajabipour, Ali, Hadigheh, S. Ali, Rad, Hooman Mahdizadeh, Arashpour, Mehrdad and Hassanli, Reza (2024). FRP bar and concrete bond durability in seawater: a meta-analysis review on degradation process, effective parameters, and predictive models. Structures, 62 106231, 106231. doi: 10.1016/j.istruc.2024.106231
Supervision
Availability
- Dr Milad Bazli is:
- Available for supervision
Looking for a supervisor? Read our advice on how to choose a supervisor.
Supervision history
Completed supervision
-
2025
Doctor Philosophy
Characterisation and Enhancement of Composite Materials for Large Springs in Wave Energy Converters
Associate Advisor
Other advisors: Professor Martin Veidt, Dr Michael Heitzmann
Media
Enquiries
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