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    State-based buckling analysis of beam-like structures

    , Article Archive of Applied Mechanics ; Volume 87, Issue 9 , 2017 , Pages 1555-1565 ; 09391533 (ISSN) Ranjbaran, A ; Ranjbaran, M ; Sharif University of Technology
    Abstract
    Beam, column, plate, and any other structure, under full or partial compressive loading, are prone to failure by the buckling phenomenon. At the instant of failure, the structure may be in unpredictable elastic, elastic–plastic, full plastic, cracked, or other forms of deterioration state. Therefore, in spite of so much study, there is no definite solution to the problem. In this paper a unified, simple, and exact theory is proposed where buckling is considered as the change of state of structure between intact and collapsed states, and then the buckling capacity is innovatively expressed via states and phenomena functions, which are explicitly defined as functions of state variable. The... 

    Behaviour of columns made from high strength steel

    , Article World Congress on Engineering 2016, WCE 2016, 29 June 2016 through 1 July 2016 ; Volume 2224 , 2016 , Pages 1184-1187 ; 20780958 (ISSN); 9789881404800 (ISBN) Said, M ; Kamalarajah, R ; Cashell, K. A ; Chizari, M ; Sharif University of Technology
    Newswood Limited  2016
    Abstract
    The buckling behaviour of compression members is very important in structural engineering especially those that are made from high strength steel (HSS). This paper presents an investigation into the behaviour of four columns which were designed according to EN 1993-1-1 (2005) so that the buckling capacity of both HSS and mild steel column was equal. A finite element model was created which included imperfections due to residual stresses as well as local and global imperfections. It was found that the buckling capacity of the columns made from 460 MPa steel was lower than that for similar capacity mild steel columns with a yield strength of 275 MPa. Accordingly, a buckling curve for HSS is... 

    3D wind buckling analysis of steel silos with stepped walls

    , Article Thin-Walled Structures ; Volume 142 , 2019 , Pages 236-261 ; 02638231 (ISSN) Maleki, S ; Mehretehran, A. M ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    Thin-walled cylindrical steel silos are one of the key structures for storage of materials in many industries and agricultural sectors. They are susceptible to instability under wind pressure when they are empty or partially filled. This paper investigates numerically the wind buckling behavior of three sample steel silos with stepped walls composed of isotropic rolled shells. Wind load vertical and circumferential distributions were adopted from Eurocodes. Two proposed circumferential pressure distributions for an isolated silo and a silo in a group with a closed roof were taken into consideration. Moreover, the effect of additional inward pressure, proposed by Eurocode, on buckling...