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Author: Kvaternik S.

  • TRANSPORT TECHNICS. INVESTIGATION OF ELEMENTS. RELIABILITY

    FINITE ELEMENT ANALYSIS OF TORSIONAL-FLEXURAL BEHAVIOUR OF THIN-WALLED FRAME CONSIDERING JOINT WARPING CONDITIONS

    • Kvaternik S.
    • Turkalj G.
    • Banić D.
    Trans Motauto World, Vol. 2 (2017), Issue 5, pg(s) 181-183
    • Abstract
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    •  Article PDF

    Frames composed of thin-walled beam elements are frequently used as load-carrying systems in engineering practice. In this work the influence of different structural joint types on torsional moment transmission from column to beam is analysed. Two types of beam cross sections are considered, the I-beam cross section and the channel one. Four different structural joints are examined for both cross sectional types. Numerical simulations are undertaken using MSC. Nastran’s shell model consisting of eight-nodded flat elements. The results obtained are discussed through the test problems.

  • TECHNOLOGIES

    CREEP ANALYSIS OF ELASTIC BEAMS UNDER CONSTANT TORQUE

    • Banić D.
    • Lanc D.
    • Kvaternik S.
    Machines. Technologies. Materials., Vol. 11 (2017), Issue 5, pg(s) 229-232
    • Abstract
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    •  Article PDF

    This paper presents a two-dimensional numerical algorithm for creep analysis of the elastic beams under uniform torsion. Torque is assumed to be constant during the whole creep process. Tangential stresses are calculated following the warping function distribution. Material creep behaviour is simulated using the effective stress function. Analysis takes in consideration the torque acting on cross-sectional surface independently on the beam length. The proposed numerical algorithm enables the stress analysis to be carried out regardless of the cross-sectional shapes. Viscoelastic effects of the material are modelled by the creep power law formula. Numerical algorithm was developed in Python code and its effectiveness is validated through the benchmark example.

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