Longitudinally inhomogeneous deformation patterns in isotropic tubes under pure bending

Author:

Wadee M. Khurram1,Wadee M. Ahmer2,Bassom Andrew P3,Aigner Andreas A1

Affiliation:

1. School of Engineering, Computer Science and Mathematics, University of ExeterNorth Park Road, Exeter, Devon EX4 4QF, UK

2. Department of Civil and Environmental Engineering, South Kensington Campus, Imperial College LondonLondon SW7 2AZ, UK

3. School of Mathematics and Statistics, The University of Western AustraliaCrawley 6009, Australia

Abstract

A variational model is formulated that accounts for the localization of deformation due to buckling under pure bending of thin-walled elastic tubes with circular cross-sections. Previous studies have successfully modelled the gradual process of ovalization of the cross-section with an accompanying progressive reduction in stiffness but these theories have had insufficient freedom to incorporate any longitudinal variation in the tube. Here, energy methods and small-strain nonlinear elastic theory are used to model the combined effects of cross-section deformation and localized longitudinal buckling. Results are compared with a number of case studies, including a nanotube, and it is found that the model gives rise to behaviours that correlate well with some published physical experiments and numerical studies.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

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