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Prof Mahen Mahendran
Prof Mahen Mahendran
Professor of Structural Engineering, School of Civil and Environmental Engineering, Queensland
Zweryfikowany adres z qut.edu.au - Strona główna
Tytuł
Cytowane przez
Cytowane przez
Rok
Mechanical properties of cold-formed steels at elevated temperatures
ND Kankanamge, M Mahendran
Thin-Walled Structures 49 (1), 26-44, 2011
2632011
Experimental study of the mechanical properties of light gauge cold-formed steels at elevated temperatures
T Ranawaka, M Mahendran
Fire safety journal 44 (2), 219-229, 2009
1882009
Experimental study of load bearing cold-formed steel wall systems under fire conditions
S Gunalan, P Kolarkar, M Mahendran
Thin-Walled Structures 65, 72-92, 2013
1632013
Behaviour and design of cold-formed steel beams subject to lateral–torsional buckling
ND Kankanamge, M Mahendran
Thin-walled structures 51, 25-38, 2012
135*2012
Ultimate capacity of innovative cold-formed steel columns
S Narayanan, M Mahendran
Journal of constructional steel research 59 (4), 489-508, 2003
1302003
Upgrading of transmission towers using a diaphragm bracing system
F Albermani, M Mahendran, S Kitipornchai
Engineering Structures 26 (6), 735-744, 2004
1272004
Behaviour of cold-formed steel wall frames lined with plasterboard
Y Telue, M Mahendran
Journal of Constructional Steel Research 57 (4), 435-452, 2001
1242001
Experimental investigation of post-fire mechanical properties of cold-formed steels
S Gunalan, M Mahendran
Thin-Walled Structures 84, 241-254, 2014
1212014
Finite element modelling of load bearing cold-formed steel wall systems under fire conditions
S Gunalan, M Mahendran
Engineering Structures 56, 1007-1027, 2013
1112013
Numerical studies of gypsum plasterboard panels under standard fire conditions
P Keerthan, M Mahendran
Fire Safety Journal 53, 105-119, 2012
1072012
Numerical modelling of light gauge cold-formed steel compression members subjected to distortional buckling at elevated temperatures
T Ranawaka, M Mahendran
Thin-Walled Structures 48 (4-5), 334-344, 2010
1022010
Behaviour and design of cold-formed steel wall frames lined with plasterboard on both sides
Y Telue, M Mahendran
Engineering Structures 26 (5), 567-579, 2004
1012004
Experimental study of web crippling behaviour of hollow flange channel beams under two flange load cases
P Keerthan, M Mahendran, E Steau
Thin-Walled Structures 85, 207-219, 2014
992014
Distortional buckling tests of cold-formed steel compression members at elevated temperatures
T Ranawaka, M Mahendran
Journal of Constructional Steel Research 65 (2), 249-259, 2009
992009
Thermal performance of composite panels under fire conditions using numerical studies: plasterboards, rockwool, glass fibre and cellulose insulations
P Keerthan, M Mahendran
Fire technology 49, 329-356, 2013
982013
Prediction of mechanical properties of light gauge steels at elevated temperatures
JH Lee, M Mahendran, P Makelainen
Journal of Constructional Steel Research 59 (12), 1517-1532, 2003
982003
Distributed plasticity analysis of steel frame structures comprising non-compact sections
P Avery, M Mahendran
Engineering Structures 22 (8), 901-919, 2000
932000
Experimental studies on the shear behaviour and strength of LiteSteel beams
P Keerthan, M Mahendran
Engineering structures 32 (10), 3235-3247, 2010
922010
New design rules for lipped channel beams subject to web crippling under two-flange load cases
L Sundararajah, M Mahendran, P Keerthan
Thin-Walled Structures 119, 421-437, 2017
862017
Web crippling tests of cold-formed steel channels under two flange load cases
S Gunalan, M Mahendran
Journal of Constructional Steel Research 110, 1-15, 2015
852015
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