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Computational modeling of gradient hardening in polycrystals

Title: Computational modeling of gradient hardening in polycrystals
Authors: Bargmann, S.; Ekh, M.; Svendsen, B.; Runesson, K.
Source: Technische Mechanik - European Journal of Engineering Mechanics; Bd. 30 Nr. 4 (2010); 316-323 ; Technische Mechanik - European Journal of Engineering Mechanics; Vol. 30 No. 4 (2010); 316-323 ; 2199-9244 ; 0232-3869
Publisher Information: Magdeburger Verein für Technische Mechanik e.V. & Otto-von-Guericke-Universität Magdeburg
Publication Year: 2019
Collection: Open-Access-Journals @ Otto-von-Guericke-Universität Magdeburg
Description: A gradient hardening crystal plasticity model for polycrystals is introduced in Ekh et al. (2007). It is formulated in a thermodynamically consistent fashion and is capable of modeling a grain-size-dependent stress-strain response. In this contribution we extend that model to also include cross-hardening. A free energy is stated which includes contributions from the gradient of hardening along each slip direction. This leads to hardening stresses depending on the second derivative of the plastic slip. The governing equations for a nonlinear coupled system of equations is solved numerically with the help of a dual-mixed finite element method. The numerical results show that the macroscopic strength increases with decreasing grain size as a result of gradient hardening: Moreover, cross-hardening further enhances the strengthening gradient effect.
Document Type: article in journal/newspaper
File Description: application/pdf
Language: English
Relation: https://journals.ub.ovgu.de/index.php/techmech/article/view/801/777; https://journals.ub.ovgu.de/index.php/techmech/article/view/801
Availability: https://journals.ub.ovgu.de/index.php/techmech/article/view/801
Rights: Copyright (c) 2010 Technische Mechanik. Wissenschaftliche Zeitschrift für Grundlagen und Anwendungen der Technischen Mechanik
Accession Number: edsbas.3C45ECB0
Database: BASE