A new quadrilateral 4-node element for shear deformable plates is developed based on the hybrid stress formulation. The element is designed to be simple, stable, free of locking and to pass all the patch tests. To this purpose, special attention is devoted to select displacement and stress approximations. The standard displacement interpolation is enhanced by linking the transverse displacement to the nodal rotations and an appropriate stress approximation is rationally derived. In particular, the assumed stress approximation is equilibrated within each element, coordinate invariant and ruled by the minimum number of parameters. Excellent element performance is demonstrated by a wide experimental evaluation.

S. de Miranda, F. Ubertini (2006). A simple hybrid stress element for shear deformable plates. INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING, 65, 808-833 [10.1002/nme.1467].

A simple hybrid stress element for shear deformable plates

DE MIRANDA, STEFANO;UBERTINI, FRANCESCO
2006

Abstract

A new quadrilateral 4-node element for shear deformable plates is developed based on the hybrid stress formulation. The element is designed to be simple, stable, free of locking and to pass all the patch tests. To this purpose, special attention is devoted to select displacement and stress approximations. The standard displacement interpolation is enhanced by linking the transverse displacement to the nodal rotations and an appropriate stress approximation is rationally derived. In particular, the assumed stress approximation is equilibrated within each element, coordinate invariant and ruled by the minimum number of parameters. Excellent element performance is demonstrated by a wide experimental evaluation.
2006
S. de Miranda, F. Ubertini (2006). A simple hybrid stress element for shear deformable plates. INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING, 65, 808-833 [10.1002/nme.1467].
S. de Miranda; F. Ubertini
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/19517
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