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Pregled bibliografske jedinice broj: 141744

On Numerical Modeling of Combined Isotropic-Kinematic Hardening at Large Strain Elastoplasticity


Sorić, Jurica; Skoko, Jozo; Eckstein, Andreas
On Numerical Modeling of Combined Isotropic-Kinematic Hardening at Large Strain Elastoplasticity // Proceedings of the Fifth World Congress on Computational Mechanics (WCCM V) / Mang, H.A. ; Rammerstorfer, F.G. (ur.).
Beč: Vienna University of Technology, 2002. (predavanje, međunarodna recenzija, cjeloviti rad (in extenso), znanstveni)


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Naslov
On Numerical Modeling of Combined Isotropic-Kinematic Hardening at Large Strain Elastoplasticity

Autori
Sorić, Jurica ; Skoko, Jozo ; Eckstein, Andreas

Vrsta, podvrsta i kategorija rada
Radovi u zbornicima skupova, cjeloviti rad (in extenso), znanstveni

Izvornik
Proceedings of the Fifth World Congress on Computational Mechanics (WCCM V) / Mang, H.A. ; Rammerstorfer, F.G. - Beč : Vienna University of Technology, 2002

Skup
Fifth World Congress on Computational Mechanics (WCCM V)

Mjesto i datum
Beč, Austrija, 07.07.2002. - 12.07.2002

Vrsta sudjelovanja
Predavanje

Vrsta recenzije
Međunarodna recenzija

Ključne riječi
elastoplasticity; large strain; isotropic and kinematic hardening; finite element analysis

Sažetak
A computational algorithm for modeling of combined isotropic and kinematic hardening responses in a large strain elastoplastic analysis has been proposed. An associative flow rule and the von Mises yield criterion are applied. A hyperelastic approach and multiplicative decomposition of deformation gradient are adopted. The integration algorithm is based on the closest-point projection scheme, which is analogous to the algorithm of the infinitesimal theory. Assuming small elastic strain, the plastic spin is neglected in the kinematic hardening evolution equations. In order to ensure high convergence rate in the global iteration approach, a consistent elastoplastic tangent modulus is derived. The computational algorithm is implemented at the material point level of the shell finite element formulation allowing the use of complete three-dimensional constitutive laws. Robustness and efficiency of the proposed algorithm are demonstrated by numerical examples.

Izvorni jezik
Engleski

Znanstvena područja
Strojarstvo



POVEZANOST RADA


Projekti:
0120034

Profili:

Avatar Url Jurica Sorić (autor)

Avatar Url Jozo Skoko (autor)


Citiraj ovu publikaciju:

Sorić, Jurica; Skoko, Jozo; Eckstein, Andreas
On Numerical Modeling of Combined Isotropic-Kinematic Hardening at Large Strain Elastoplasticity // Proceedings of the Fifth World Congress on Computational Mechanics (WCCM V) / Mang, H.A. ; Rammerstorfer, F.G. (ur.).
Beč: Vienna University of Technology, 2002. (predavanje, međunarodna recenzija, cjeloviti rad (in extenso), znanstveni)
Sorić, J., Skoko, J. & Eckstein, A. (2002) On Numerical Modeling of Combined Isotropic-Kinematic Hardening at Large Strain Elastoplasticity. U: Mang, H. & Rammerstorfer, F. (ur.)Proceedings of the Fifth World Congress on Computational Mechanics (WCCM V).
@article{article, author = {Sori\'{c}, Jurica and Skoko, Jozo and Eckstein, Andreas}, year = {2002}, keywords = {elastoplasticity, large strain, isotropic and kinematic hardening, finite element analysis}, title = {On Numerical Modeling of Combined Isotropic-Kinematic Hardening at Large Strain Elastoplasticity}, keyword = {elastoplasticity, large strain, isotropic and kinematic hardening, finite element analysis}, publisher = {Vienna University of Technology}, publisherplace = {Be\v{c}, Austrija} }
@article{article, author = {Sori\'{c}, Jurica and Skoko, Jozo and Eckstein, Andreas}, year = {2002}, keywords = {elastoplasticity, large strain, isotropic and kinematic hardening, finite element analysis}, title = {On Numerical Modeling of Combined Isotropic-Kinematic Hardening at Large Strain Elastoplasticity}, keyword = {elastoplasticity, large strain, isotropic and kinematic hardening, finite element analysis}, publisher = {Vienna University of Technology}, publisherplace = {Be\v{c}, Austrija} }




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