A positional FEM Formulation for geometrical non-linear analysis of shells


Autoria(s): CODA, Humberto Breves; PACCOLA, Rodrigo Ribeiro
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

17/04/2012

17/04/2012

2008

Resumo

This work presents a fully non-linear finite element formulation for shell analysis comprising linear strain variation along the thickness of the shell and geometrically exact description for curved triangular elements. The developed formulation assumes positions and generalized unconstrained vectors as the variables of the problem, not displacements and finite rotations. The full 3D Saint-Venant-Kirchhoff constitutive relation is adopted and, to avoid locking, the rate of thickness variation enhancement is introduced. As a consequence, the second Piola-Kirchhoff stress tensor and the Green strain measure are employed to derive the specific strain energy potential. Curved triangular elements with cubic approximation are adopted using simple notation. Selected numerical simulations illustrate and confirm the objectivity, accuracy, path independence and applicability of the proposed technique.

Identificador

LATIN AMERICAN JOURNAL OF SOLIDS AND STRUCTURES, v.5, n.3, p.205-223, 2008

1679-7817

http://producao.usp.br/handle/BDPI/14644

http://www.lajss.org/index.php/LAJSS/article/view/159/150

Idioma(s)

eng

Publicador

LATIN AMER J SOLIDS STRUCTURES

Relação

Latin American Journal of Solids and Structures

Direitos

openAccess

Copyright LATIN AMER J SOLIDS STRUCTURES

Palavras-Chave #Finite element method #geometrical non-linearity #large displacements #shell #FINITE-ELEMENT #THICKNESS #STRAIN #MODEL #IMPLEMENTATION #DEFORMATION #DYNAMICS #STRESS #4-NODE #Engineering, Civil #Engineering, Mechanical #Mechanics
Tipo

article

original article

publishedVersion