Dr Mahbub Khan (Present)

Mahbub Khan

I have 10 years of post-graduate experience, working across structural research, analysis, and teaching. I am experienced in field testing, lab testing, and analysis from first principles, standards, and using computational methods to generate bespoke solutions to complex problems.

Education

  • PhD in Structural Engineering, The University of New South Wales, Australia (2012 – 2016)
  • Master of Engineering, University of Auckland, New Zealand (2006 - 2007)
  • Bachelor of Engineering (Civil Engineering), University of Auckland, New Zealand (2002 - 2006)

Employment

  • Research Fellow - The University of Melbourne and The University of Sydney (2023 - Present)
  • Research Fellow - The University of Sydney (2019 - 2022)
  • Research Fellow - Australian Nuclear Research and Technology (ANSTO) (2017 - 2018)
  • Postdoctoral Fellow - UNSW (2016 - 2017)

Awards and Scholarships

  • PhD Scholarship - UNSW

Publications

  • Khan M, Uy B, Kim JW. Development of new inner diaphragms for a H beam and composite boxcolumn joint. Steel and Composite Structures 2022, 42(3), 363-373
  • Li D, Paradowska A, Uy B, Wang J, Khan M. Residual stresses of box and I-shaped columns fabricated from S960 ultra-high-strength steel. Journal of Constructional Steel Research 2020, 166, 105904
  • Khan M, Uy B, Kim JW. Finite element (FE) analysis of H-Beam - Composite POSCO (P)-Box column joints with new inner diaphragms. IABSE Congress, Christchurch 2020: Resilient Technologies for Sustainable Infrastructure - Proceedings 2020, 1289-1296
  • Khan M, Uy B, Tao Z, Mashiri F. Behaviour and design of short high-strength steel welded box and concrete-filled tube (CFT) sections. Engineering Structures 2017, 147, 458-472
  • Khan M, Uy B, Tao Z, Mashiri F. Concentrically loaded slender square hollow and composite columns incorporating high strength properties. Engineering Structures 2017, 131, 69-89
  • Khan M, Paradowska A, Uy B, Mashiri F, Tao Z. Residual stresses in high strength steel welded box sections. Journal of Constructional Steel Research 2016, 116, 55-64
  • Thai HT, Uy B, Khan M. A modified stress-strain model accounting for the local buckling of thin-walled stub columns under axial compression. Journal of Constructional Steel Research 2015, 111, 57-69
  • Thai HT, Uy B, Khan M. Tao Z, Mashiri F. Numerical modelling of concrete-filled steel box columns incorporating high strength materials. Journal of Constructional Steel Research 2014, 102, 256-265