
Overview
Background
Editor-in-Chief (1993-2021); Honorary Editor (since 2022):: Engineering Structures journal
Emeritus Professor Sritawat Kitipornchai Named Highly Cited Researcher: 2019; 2020; 2021; 2022; 2023
Emeritus Professor Sritawat Kitipornchai has been named as a Cross-Field Highly Cited Researcher by Clarivate over the past 5 years, in the 2019; 2020, 2021, 2022 and 2023 editions of their list. There are less than 7000 researchers in the world who made it to the list. The title of Highly Cited Researcher is reserved only for those who have consistently published work with exceptionally high academic impact over a sustain period. Professor Kitipornchai is a world-renowned researcher in structural engineering and applied mechanics. His pioneering studies in a number of areas have been internationally recognized and acknowledged as being at the forefront of their fields. He is one of the most prolific researchers, with a Web of Science h-index of 82, which is one of the highest among civil engineering researchers in Australia.
Professor Kitipornchai has published 20 Highly Cited Papers in recent years in the cross-disciplinary field of engineering mechanics and composite structures. His research on the mechanical performances of composite beams and plates at the micro-/nano- scales was the first of its kind and has had a significant impact on the development of micro-systems in civil, mechanical engineering, such as atomic force microscopes by which the mechanical behaviour of micro-/nano-structures can now be examined.
To address the urgent need for lightweight yet very strong structures with a promising application potentials in various areas such as aircraft, space shuttle, automobiles, marine structures and buildings, Professor Kitipornchai and Professor Jie Yang at RMIT University have led a strong research team to conduct cutting-edge research work on the novel inhomogeneous composite structures reinforced by super strong carbon nanotube or graphene based nanomaterials. This innovative idea is to disperse these nanomaterials non-uniformly with more in the part where they are most needed to achieve significantly improved mechanical properties. They have also introduced non-uniform distribution of internal pores to further reduce the weight of the proposed structures. These pioneering studies have opened up a new avenue for the development of new generation structural forms with an excellent combination of high stiffness and low weight. Their research findings have received extensive citations from peer researchers.
Another notable contribution of Professor Kitipornchai lies in the analysis and design of transmission towers. Together with his former UQ colleague, Professor Faris Albermani, they have developed the only known technique with the ability to simulate accurately the ultimate structural behaviour of latticed transmission tower structures. The current power industry practice requires tower structures to undergo full-scale testing, which is very costly and time consuming. The developed numerical simulation technique has been widely applied in Australia’s power industry. It has the potential to save the industry hundreds of millions of dollars worldwide and to increase the safety of tower structures.
Professor Kitipornchai was elected to the Australian Academy of Technological Sciences and Engineering in 2009 and to the European Academy of Sciences and Arts in 2016.
Availability
- Emeritus Professor Sritawat Kitipornchai is:
- Available for supervision
Qualifications
- Bachelor (Honours) of Engineering, Monash University
- Australian Academy of Technological Sciences and Engineering, Australian Academy of Technological Sciences and Engineering
Research interests
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Interests
Structural stability; nonlinear analysis; thin-walled structures, transmission towers; cold-formed structures; structural mechanics; vibration of plates; composite structures; laminated plates; smart materials; wave propagation techniques; structural engineering, particularly steel design problems and smart materials
Works
Search Professor Sritawat Kitipornchai’s works on UQ eSpace
2014
Journal Article
Axisymmetric postbuckling analysis of size-dependent functionally graded annular microplates using the physical neutral plane
Ke, Liao-Liang, Yang, Jie, Kitipornchai, Sritawat and Wang, Yue-Sheng (2014). Axisymmetric postbuckling analysis of size-dependent functionally graded annular microplates using the physical neutral plane. International Journal of Engineering Science, 81, 66-81. doi: 10.1016/j.ijengsci.2014.04.005
2014
Journal Article
Free vibration of size-dependent magneto-electro-elastic nanoplates based on the nonlocal theory
Ke, Liao-Liang, Wang, Yue-Sheng, Yang, Jie and Kitipornchai, Sritawat (2014). Free vibration of size-dependent magneto-electro-elastic nanoplates based on the nonlocal theory. Acta Mechanica Sinica/Lixue Xuebao, 30 (4), 516-525. doi: 10.1007/s10409-014-0072-3
2014
Journal Article
Geometrically nonlinear free vibration of shear deformable piezoelectric carbon nanotube/fiber/polymer multiscale laminated composite plates
Rafiee, M., Liu, X. F., He, X. Q. and Kitipornchai, S. (2014). Geometrically nonlinear free vibration of shear deformable piezoelectric carbon nanotube/fiber/polymer multiscale laminated composite plates. Journal of Sound and Vibration, 333 (14), 3236-3251. doi: 10.1016/j.jsv.2014.02.033
2014
Conference Publication
Active nonlinear vibration control of CNT-reinforced composite beams in thermal environment
Yang, J., Rafiee, M., Ke, L. L. and Kitipornchai, S. (2014). Active nonlinear vibration control of CNT-reinforced composite beams in thermal environment. 4th International Conference on Dynamics, Vibration and Control (ICDVC2014), Shanghai, China, 23-25 August 2014.
2014
Conference Publication
Thermal effect on the free vibration of geometrically nonlinear functionally graded micro-beams under electrical actuation
Jia, X. L., Ke, L. L., Yang, J. and Kitipornchai, S. (2014). Thermal effect on the free vibration of geometrically nonlinear functionally graded micro-beams under electrical actuation. 1st International Conference on Computational and Experimental Methods for Composite Materials and Structures, Harbin, China, 10-12 September 2014.
2014
Conference Publication
Thermo-electric-mechanical vibration of nonlocal piezoelectric nanobeams
Ke, L. L., Wang, Y. S., Yang, J. and Kitipornchai, S. (2014). Thermo-electric-mechanical vibration of nonlocal piezoelectric nanobeams. 4th International Conference on Dynamics, Vibration and Control (ICDVC2014), Shanghai, China, 23-25 August 2014.
2014
Journal Article
Buckling and post-buckling of size-dependent piezoelectric Timoshenko nanobeams subject to thermo-electro-mechanical loadings
Liu, C., Ke, L. L., Wang, Y. S., Yang, J. and Kitipornchai, S. (2014). Buckling and post-buckling of size-dependent piezoelectric Timoshenko nanobeams subject to thermo-electro-mechanical loadings. International Journal of Structural Stability and Dynamics, 14 (3) 1350067, 1350067. doi: 10.1142/S0219455413500673
2014
Conference Publication
Free vibration of geometrically nonlinear functionally graded micro-switches under electrostatic force and temperature change
Jia, Xiaoli, Zhang, Shimin, Ke, Liaoliang, Yang, Jie and Kitipornchai, Sritawat (2014). Free vibration of geometrically nonlinear functionally graded micro-switches under electrostatic force and temperature change. 21st International Congress on Sound and Vibration 2014, Beijing, China, 13-17 July 2014. International Institute of Acoustics and Vibrations.
2014
Conference Publication
Characterization of FGM micro-switches under electrostatic and Casimir forces
Jia, X. L., Yang, J. and Kitipornchai, S. (2014). Characterization of FGM micro-switches under electrostatic and Casimir forces. 9th World Congress on Computational Mechanics, WCCM 2010, Held in Conjuction with the 4th Asian Pacific Congress on Computational Mechanics, APCOM 2010, Sydney, NSW Australia, 19 - 23 July 2010. Bristol, United Kingdom: Institute of Physics Publishing. doi: 10.1088/1757-899X/10/1/012178
2013
Journal Article
Thermo-electro-mechanical vibration of piezoelectric nanoplates based on the nonlocal theory
Liu, Chen, Ke, Liao-Liang, Wang, Yue-Sheng, Yang, Jie and Kitipornchai, Sritawat (2013). Thermo-electro-mechanical vibration of piezoelectric nanoplates based on the nonlocal theory. Composite Structures, 106, 167-174. doi: 10.1016/j.compstruct.2013.05.031
2013
Journal Article
Dispersion spectrum in a functionally graded carbon nanotube-reinforced plate based on first-order shear deformation plate theory
Zhu, J., Yang, J. and Kitipornchai, S. (2013). Dispersion spectrum in a functionally graded carbon nanotube-reinforced plate based on first-order shear deformation plate theory. Composites Part B-Engineering, 53, 274-283. doi: 10.1016/j.compositesb.2013.04.016
2013
Journal Article
Axisymmetric nonlinear free vibration of size-dependent functionally graded annular microplates
Ke, L. L., Yang, J., Kitipornchai, S., Bradford, M. A. and Wang, Y. S. (2013). Axisymmetric nonlinear free vibration of size-dependent functionally graded annular microplates. Composites Part B-Engineering, 53, 207-217. doi: 10.1016/j.compositesb.2013.04.066
2013
Journal Article
Thermal bifurcation buckling of piezoelectric carbon nanotube reinforced composite beams
Rafiee, M., Yang, Jie and Kitipornchai, Siritiwat (2013). Thermal bifurcation buckling of piezoelectric carbon nanotube reinforced composite beams. Computers and Mathematics with Applications, 66 (7), 1147-1160. doi: 10.1016/j.camwa.2013.04.031
2013
Journal Article
Dynamic stability of piezoelectric laminated cylindrical shells with delamination
Yang, Jinhua, Yang, Jie and Kitipornchai, Sritawat (2013). Dynamic stability of piezoelectric laminated cylindrical shells with delamination. Journal of Intelligent Material Systems and Structures, 24 (14), 1770-1781. doi: 10.1177/1045389X13486710
2013
Journal Article
Snap-through and pull-in analysis of an electro-dynamically actuated curved micro-beam using a nonlinear beam model
Hu, Y. J., Yang, J. and Kitipornchai, S. (2013). Snap-through and pull-in analysis of an electro-dynamically actuated curved micro-beam using a nonlinear beam model. Journal of Sound and Vibration, 332 (15), 3821-3832. doi: 10.1016/j.jsv.2013.01.040
2013
Journal Article
Large amplitude vibration of carbon nanotube reinforced functionally graded composite beams with piezoelectric layers
Rafiee, Mohammad, Yang, Jie and Kitipornchai, Sritawat (2013). Large amplitude vibration of carbon nanotube reinforced functionally graded composite beams with piezoelectric layers. Composite Structures, 96, 716-725. doi: 10.1016/j.compstruct.2012.10.005
2013
Journal Article
Pull-in instability of electrically actuated Poly-SiGe graded micro-beams
Jia, Xiao L., Zhang, Shi M., Yang, Jie and Kitipornchai, Sritawat (2013). Pull-in instability of electrically actuated Poly-SiGe graded micro-beams. Coupled Systems Mechanics, 2 (3), 215-230. doi: 10.12989/csm.2013.2.3.215
2013
Conference Publication
Free vibration of piezoelectric nanoplates based on the nonlocal theory
Liu, Chen, Ke, Liaoliang, Wang, YueSheng, Yang, Jie and Kitipornchai, Sritawat (2013). Free vibration of piezoelectric nanoplates based on the nonlocal theory. International Conference on Science and Technology of Heterogeneous Materials and Structures (ICSTHMS2013), Wuhan, China, 11-13 October 2013.
2013
Journal Article
Dynamic stability of functionally graded carbon nanotube-reinforced composite beams
Ke, Liao-Liang, Yang, Jie and Kitipornchai, Sritawat (2013). Dynamic stability of functionally graded carbon nanotube-reinforced composite beams. Mechanics of Advanced Materials and Structures, 20 (1), 28-37. doi: 10.1080/15376494.2011.581412
2013
Journal Article
Experimental study of perforated yielding shear panel device for passive energy dissipation
Chan Ricky W. K., Albermani, Faris and Kitipornchai, Sritawat (2013). Experimental study of perforated yielding shear panel device for passive energy dissipation. Journal of Constructional Steel Research, 91, 14-25. doi: 10.1016/j.jcsr.2013.08.013
Supervision
Availability
- Emeritus Professor Sritawat Kitipornchai is:
- Available for supervision
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Supervision history
Current supervision
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Doctor Philosophy
Exact title to be determined.
Principal Advisor
Completed supervision
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2022
Doctor Philosophy
Nanocomposites Reinforced with 3D Graphene: From Atomistic Simulation to Continuum Modelling
Principal Advisor
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2018
Doctor Philosophy
Nonlinear Behaviour and Imperfection Sensitivity of Functionally Graded Nanocomposite Structures
Principal Advisor
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2018
Doctor Philosophy
Static and Dynamic Analysis of Functionally Graded Porous Structures
Principal Advisor
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2022
Doctor Philosophy
Semi-analytical solutions for hydrodynamic behaviours of floating polygonal platforms and ring breakwaters
Associate Advisor
Other advisors: Professor Chien Ming Wang
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2022
Doctor Philosophy
Structural Dynamics under Moving Loads: Inclined Structure, MINE Method, and Structural Health Monitoring
Associate Advisor
Other advisors: Professor Chien Ming Wang
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2021
Doctor Philosophy
Numerical and Experimental Studies of a Novel Porous Breakwater
Associate Advisor
Other advisors: Professor Chien Ming Wang
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2021
Doctor Philosophy
Mechanics of digitally-fabricated hinges for folded steel structures
Associate Advisor
Other advisors: Associate Professor Joe Gattas
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2021
Doctor Philosophy
Development of Integrated Offshore Fish Cage and Floating Spar Wind Turbine
Associate Advisor
Other advisors: Professor Chien Ming Wang
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2020
Doctor Philosophy
Hybrid FRP-concrete-steel double-skin tubular truss bridge: design, construction and testing
Associate Advisor
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2020
Doctor Philosophy
The Behaviour of CFRP-to-Steel Bonded Joints Under Fatigue Loading
Associate Advisor
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2019
Doctor Philosophy
Behaviour of FRP-to-concrete bonded joints under cyclic and thermal loading
Associate Advisor
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2008
Doctor Philosophy
Metallic Yielding Devices for Passive Dissipation of Seismic Energy
Associate Advisor
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2005
Doctor Philosophy
NO STONE UNTURNED: TOWARDS THE DESIGN OF THIN STRUCTURAL STONE VENEERS
Associate Advisor
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2004
Doctor Philosophy
THE FIELD OF STRUCTURAL MECHANICS AND THE SUPPORT CONDITIONS AND FIXING OF MODERATELY THICK PLATES SUBJECTED TO UNIFORM LOADING
Associate Advisor
Media
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