Affiliation:
1. Department of Civil Engineering, Xi’an Jiaotong-Liverpool University, 111 Ren’ai Road, Suzhou Dushu Lake Science and Education, Innovation District, Suzhou Industrial Park, Suzhou 215123, People’s Republic of China
Abstract
There is a major restriction in the formulation of rigorous lower bound limit analysis by means of the finite-element method. Once the stress field has been discretized, the yield criterion and the equilibrium conditions must be applied at a finite number of points so that they are satisfied everywhere throughout the discretized structure. Until now, only the linear stress elements fulfil this requirement for several types of loads and structural conditions. However, there are also standard types of problems, like the one of plates under uniformly distributed loads, where the implementation of the lower bound theorem is still not possible. In this paper, it is proven for the first time that there is a class of stress interpolation elements which fulfils all the requirements of the lower bound theorem. Moreover, there is no upper restriction of the polynomial interpolation order. The efficiency is examined through plane strain, plane stress and Kirchhoff plate examples. The generalization to three-dimensional and other structural conditions is also straightforward. Thus, this interpolation scheme which is based on the Bernstein polynomials is expected to play a fundamental role in future developments and applications.
Subject
General Physics and Astronomy,General Engineering,General Mathematics
Reference41 articles.
1. Gvozdev A. 1938 The determination of the value of the collapse load for statically indeterminate systems undergoing plastic deformation. [In Russian]. In Conference on Plastic Deformations 1936 (ed. B Galerkin) pp. 19–38. Moscow Russia: Akademia Nauk SSSR.
2. Extended limit design theorems for continuous media
3. Plane stress limit analysis by finite elements;Belytschko T;J. Eng. Mech. Div. (ASCE),1970
4. Limit analysis of plane problems in soil mechanics;Lysmer J;J. Soil Mech. Foundations Div. (ASCE),1970
5. Analyse limite: détermination numérique de solutions statiques complétes. Application au talus vertical;Pastor J;J. de Mécanique appliquée,1978
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