Dynamic Elastic-Plastic Buckling of Structural Elements: A Review

Author:

Karagiozova D.1,Alves Marcílio2

Affiliation:

1. Institute of Mechanics, Bulgarian Academy of Sciences, Acad. Georgi Bonchev Street, Block 4, Sofia 1113, Bulgaria

2. Group of Solid Mechanics and Structural Impact, Department of Mechatronics and Mechanical Systems Engineering, University of São Paulo, Avenida Professor Mello Moraes 2231, 05508-030 São Paulo, Brazil

Abstract

Structural elements, which deform inelastically, are often used in energy-absorbing devices due to their simple design and the high efficiency achieved by several buckling deformation mechanisms. The application of light ductile materials in transportation systems and increased loading intensity requires studies on the influence of the rate of loading and material characteristics on dynamic buckling behavior. The present review article is focused on summarizing the state of the art related to the inelastic dynamic stability and postbuckling behavior of various basic structural members. In particular, studies on the dynamic response of axially loaded idealized elastic-plastic models, rods, shells with circular and square cross sections, and long tubes are discussed with consideration given to the influence of the geometric and material characteristics as well as the loading conditions on the buckling phenomena observed in these structural elements. The findings from the theoretical and experimental investigations on the phenomenon of dynamic inelastic buckling reported in this review article are based on 118 references.

Publisher

ASME International

Subject

Mechanical Engineering

Reference118 articles.

1. Dynamic Buckling of Imperfection-Sensitive Structures;Budiansky

2. Dynamic Buckling Estimates;Hutchinson;AIAA J.

3. Dynamic Buckling Loads of Imperfection-Sensitive Structures From Perturbation Procedure;Danielson;AIAA J.

4. On the Postbuckling Behaviour of Imperfection-Sensitive Structures in Plastic Range;Hutchinson;ASME J. Appl. Mech.

5. On the Dynamic Buckling of a Simple Elastic-Plastic Model;Jones;Int. J. Solids Struct.

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