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Objectivity of strain measures in geometrically exact 3D beam theory and its finite element implementation (CROSBI ID 121903)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Crisfield, M. A. ; Jelenić, Gordan Objectivity of strain measures in geometrically exact 3D beam theory and its finite element implementation // Proceedings of the Royal Society A. Mathematical, physical and engineering sciences, 455 (1999), 1983; 1125-1147-x

Podaci o odgovornosti

Crisfield, M. A. ; Jelenić, Gordan

engleski

Objectivity of strain measures in geometrically exact 3D beam theory and its finite element implementation

The paper discusses the issue of discretization of the strain-configuration relationships in the geometrically exact theory of three-dimensional (3D) beams, which has been at the heart of most recent nonlinear finite-element formulations. It is demonstrated that the usual discretization procedures for implementing these strain measures within a finite-element framework violate the important property of objectivity: invariance to rigid-body rotations. A method is proposed for overcoming this limitation, which paves the way for an objective finite-element formulation of the geometrically exact 3D beam theory. For a two-noded element, this method involves obtaining the relative rotation matrix that rotates one nodal triad onto the other and then interpolating the resulting rotation vector.

objective interpolation; large 3D rotations

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Podaci o izdanju

455 (1983)

1999.

1125-1147-x

objavljeno

1364-5021

Povezanost rada

Temeljne tehničke znanosti

Indeksiranost