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Topology optimization of 2D-frame structures with path-dependent response

✍ Scribed by Claus B. W. Pedersen


Publisher
John Wiley and Sons
Year
2003
Tongue
English
Weight
441 KB
Volume
57
Category
Article
ISSN
0029-5981

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✦ Synopsis


Abstract

This paper deals with topology stiffness optimization of a ground structure consisting of rectangular 2D‐beam elements with path‐dependent response. The objective of the optimization is to minimize the compliance of the structure when the mass is prescribed. The path‐dependent response of the structure is due to the plastic hinges at the ends of the beam elements. The plastic hinges are modelled through yield surfaces giving the interaction between the stress resultants when the cross‐section is fully plastified. In combination with the yield surface a simple hardening rule is applied. The geometrical non‐linearities are also included, so the beam elements can perform large rigid body rotations. The finite element solution is obtained with an implicit backward Euler algorithm. From the finite element solution the analytical sensitivities are computed using the direct method. Copyright © 2003 John Wiley & Sons, Ltd.