Szczegóły publikacji
Opis bibliograficzny
Anisotropic sheet forming simulations based on the ALAMEL model: application on cup deep drawing and ironing / P. Eyckens, J. GAWĄD, Q. Xie, [et al.] // W: NUMISHEET 2011 : the 8th international conference and workshop on Numerical simulation of 3D sheet metal forming processes : August 21–26, 2011, Seoul, Korea / American Institute of Physics. — [Melville ; New York] : AIP, cop. 2011. — (AIP Conference Proceedings ; ISSN 0094-243X ; vol. 1383). — ISBN: 978-0-7354-0949-1. — S. 330–336. — Bibliogr. s. 336, Abstr. — J. Gawąd – pierwsza afiliacja: Katholieke Universiteit Leuven ; druga afiliacja: Department of Applied Computer Science and Modeling, AGH University of Science and Technology (afiliacja niewidoczna w bazie Web of Science)
Autorzy (9)
- Eyckens Philip
- AGHGawąd Jerzy
- Xie Zhixiang
- Van Bael Albert
- Roose Dirk
- Samaey Giovanni
- Moerman J.
- Vegter Henk
- Van Houtte Paul
Słowa kluczowe
Dane bibliometryczne
| ID BaDAP | 62335 |
|---|---|
| Data dodania do BaDAP | 2011-11-23 |
| Rok publikacji | 2011 |
| Typ publikacji | materiały konferencyjne (aut.) |
| Otwarty dostęp | |
| Czasopismo/seria | AIP Conference Proceedings |
Abstract
The grain interaction ALAMEL model [1] allows predicting the evolution of the crystallographic texture and the accompanying evolution in plastic anisotropy. A FE constitutive law, based on this multilevel model, is presented and assessed for a cup deep drawing process followed by an ironing process. A Numisheet2011 benchmark (BM-1) is used for the application. The FE material model makes use of the Facet plastic potential [2] for a relatively fast evaluation of the yield locus. A multi-scale approach [3] has been recently developed in order to adaptively update the constitutive law by accommodating it to the evolution of the crystallographic texture. The identification procedure of the Facet coefficients, which describe instantaneous plastic anisotropy, is accomplished through virtual testing by means of the ALAMEL model, as described in more detail in the accompanying conference paper [4]. Texture evolution during deformation is included explicitly by re-identification of Facet coefficients in the course of the FE simulation. The focus of this paper lies on the texture-induced anisotropy and the resulting earing profile during both stages of the forming process. For the considered AKDQ steel material, it is seen that texture evolution during deep drawing is such that the anisotropic plastic flow evolves towards a more isotropic flow in the course of deformation. Texture evolution only slightly influences the obtained cup height for this material. The ironing step enlarges the earing height. © 2011 American Institute of Physics.