A unified approach for shear-locking-free triangular and rectangular shell finite elements
โ Scribed by Kai-Uwe Bletzinger; Manfred Bischoff; Ekkehard Ramm
- Publisher
- Elsevier Science
- Year
- 2000
- Tongue
- English
- Weight
- 484 KB
- Volume
- 75
- Category
- Article
- ISSN
- 0045-7949
No coin nor oath required. For personal study only.
โฆ Synopsis
A new concept for the construction of locking-free ยฎnite elements for bending of shear deformable plates and shells, called DSG (Discrete Shear Gap) method, is presented. The method is based on a pure displacement formulation and utilizes only the usual displacement and rotational degrees of freedom (dof) at the nodes, without additional internal parameters, bubble modes, edge rotations or whatever. One unique rule is derived which can be applied to both triangular and rectangular elements of arbitrary polynomial order. Due to the nature of the method, the order of numerical integration can be reduced, thus the elements are actually cheaper than displacement elements with respect to computation time. The resulting triangular elements prove to perform particularly well in comparison with existing elements. The rectangular elements have a certain relation to the Assumed Natural Strain (ANS) or MITC-elements, in the case of a bilinear interpolation, they are even identical.
๐ SIMILAR VOLUMES
In this paper a locking-free method, using mixed finite elements, is introduced to approximate the solution of Naghdi shell problems with small parameter t, the thickness of the shell. The approach of Arnold and Brezzi (1997) is employed with some important changes. Instead of proving the discrete I
## Abstract Numerical models for finite element analyses of assemblages of thinโwalled openโsection profiles are presented. The assumed kinematical model is based on TimoshenkoโReissner theory so as to take shear strain effects of nonโuniform bending and torsion into account. Hence, strain elasticโ