Improved finite element for 3D laminate frame analysis including warping for any cross-section


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

UNIVERSIDADE DE SÃO PAULO

Data(s)

18/10/2012

18/10/2012

2010

Resumo

The most ordinary finite element formulations for 3D frame analysis do not consider the warping of cross-sections as part of their kinematics. So the stiffness, regarding torsion, should be directly introduced by the user into the computational software and the bar is treated as it is working under no warping hypothesis. This approach does not give good results for general structural elements applied in engineering. Both displacement and stress calculation reveal sensible deficiencies for both linear and non-linear applications. For linear analysis, displacements can be corrected by assuming a stiffness that results in acceptable global displacements of the analyzed structure. However, the stress calculation will be far from reality. For nonlinear analysis the deficiencies are even worse. In the past forty years, some special structural matrix analysis and finite element formulations have been proposed in literature to include warping and the bending-torsion effects for 3D general frame analysis considering both linear and non-linear situations. In this work, using a kinematics improvement technique, the degree of freedom ""warping intensity"" is introduced following a new approach for 3D frame elements. This degree of freedom is associated with the warping basic mode, a geometric characteristic of the cross-section, It does not have a direct relation with the rate of twist rotation along the longitudinal axis, as in existent formulations. Moreover, a linear strain variation mode is provided for the geometric non-linear approach, for which complete 3D constitutive relation (Saint-Venant Kirchhoff) is adopted. The proposed technique allows the consideration of inhomogeneous cross-sections with any geometry. Various examples are shown to demonstrate the accuracy and applicability of the proposed formulation. (C) 2009 Elsevier Inc. All rights reserved.

Identificador

APPLIED MATHEMATICAL MODELLING, v.34, n.4, p.1107-1137, 2010

0307-904X

http://producao.usp.br/handle/BDPI/17858

10.1016/j.apm.2009.07.020

http://dx.doi.org/10.1016/j.apm.2009.07.020

Idioma(s)

eng

Publicador

ELSEVIER SCIENCE INC

Relação

Applied Mathematical Modelling

Direitos

restrictedAccess

Copyright ELSEVIER SCIENCE INC

Palavras-Chave #Improved finite element #Warping #3D laminate frame #FEM #Geometric non-linear analysis #POSITIONAL FEM FORMULATION #NONLINEAR-ANALYSIS #BEAM THEORY #DYNAMICS #TORSION #SHELLS #Engineering, Multidisciplinary #Mathematics, Interdisciplinary Applications #Mechanics
Tipo

article

original article

publishedVersion