Self-moments stiffening effect and buckling strength of periodic Vierendeel beams

Author:

Penta FrancescoORCID

Abstract

AbstractThis paper deals with the buckling phenomenon of periodic Vierendeel beams. Closed-form solutions for critical loads and deformed shapes are presented. They are built by exploiting several auxiliary solutions obtained for the discrete periodic girder and for a geometrically nonlinear micro-polar equivalent model. In particular, the girder when subjected to sinusoidal self-equilibrated systems of inner bending moments (self-moments) is analysed. The corresponding results are used for solving the large-deflection equilibrium problem of the continuous equivalent model by means of the eigenfunction expansion technique. Girder buckling conditions are then defined in terms of kinematics of the micro-polar model: more precisely, they are attained when special distributions of self-moments, able to bend the continuous system without violating compatibility of shear strains, act in the girder. It is shown that these systems, neglected in the theories presented so far, have a significant stiffening effect on the buckling girder behaviour. Moreover, they are governed by the continuity equation for micro-rotations that is solved in closed form by the Galerkin method, with the micro-polar model eigenfunctions as basis functions. The accuracy of the proposed solutions is verified by comparing them with those achieved by a series of finite element girder models.

Funder

Università degli Studi di Napoli Federico II

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Computational Mechanics

Reference55 articles.

1. Malhas, F.: Steel Structures-Design and Behavior: International Edition, International edn. Pearson Education, USA (2008)

2. Tej, P., Tejova, A.: Design of an experimental prestressed Vierendeel pedestrian bridge made of UHPC. In: Applied Mechanics and Materials, Vol. 587, pp. 1642–1645. Trans Tech Publ (2014)

3. Nakayama, Y.: Aerodynamic stability of cable-stayed bridge with new Vierendeel-type girder. Eng. Struct. 7(2), 85–92 (1985)

4. Noor, A.K., Hampton, V.: Assessment of current state-of-the-art in modeling techniques and analysis methods for large space structures. Model. Anal. Optim. Issues Large Space Struct. NASA Conf. Publ. 2258, 5–32 (1983)

5. Cao, J., Grenestedt, J.L., Maroun, W.J.: Steel truss/composite skin hybrid ship hull part. I: design and analysis. Compos. A Appl. Sci. Manuf. 38(7), 1755–1762 (2007)

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1. A method to evaluate the axial buckling load of periodic Vierendeel beams;International Journal of Solids and Structures;2023-09

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