In-plane dynamic buckling of duoskelion beam-like structures: discrete modeling and numerical results

Author:

Turco Emilio1ORCID,Barchiesi Emilio2,dell’Isola Francesco3

Affiliation:

1. Department of Architecture, Design and Urban planning (DADU), University of Sassari, Alghero, Italy; International Research Center on Mathematics and Mechanics of Complex Systems (M&MOCS), University of L’Aquila, L’Aquila, Italy

2. Universidad de Lima, Instituto de Investigación Científica, Santiago de Surco, Peru; École Nationale d’Ingénieurs de Brest, Brest, France; Department of Architecture, Design and Urban planning (DADU), University of Sassari, Alghero, Italy

3. Department of Civil, Construction-Architectural and Environmental Engineering (DICEAA) and International Research Center on Mathematics and Mechanics of Complex Systems (M&MOCS), University of L’Aquila, L’Aquila, Italy

Abstract

In this contribution, a previously introduced discrete model for studying the statics of duoskelion beam-like structures is extended to dynamics. The results of numerical simulations performed using such an extended model are reported to discuss the in-plane dynamic buckling of duoskelion structures under different loading and kinematic boundary conditions. The core instrument of the analysis is a discrete beam element, which, in addition to flexure, also accounts for extension and shearing deformations. Working in the setting of dynamics, inertial contributions are taken into account as well. A stepwise time integration scheme is employed to reconstruct the complete trajectory of the system, namely before and after buckling. It is concluded that the duoskelion structure exhibits exotic features compared with classical beam-like structures modeled at macro-scale by Euler–Bernoulli’s model.

Publisher

SAGE Publications

Subject

Mechanics of Materials,General Materials Science,General Mathematics

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