Szczegóły publikacji

Opis bibliograficzny

Hierarchical multi-scale modeling of texture induced plastic anisotropy in sheet forming / J. GAWĄD, A. Van Bael, P. Eyckens, G. Samaey, P. Van Houtte, D. Roose // Computational Materials Science ; ISSN 0927-0256. — 2013 — vol. 66, s. 65–83. — Bibliogr. s. 83, Abstr. — J. Gawąd – dod. afiliacja: KU Leuven, Belgium

Autorzy (6)

Słowa kluczowe

plastic potentialtexture evolutionparameter identificationsheet formingplastic anisotropyhierarchical multi scale modellingmulti-level model

Dane bibliometryczne

ID BaDAP80356
Data dodania do BaDAP2014-03-04
Tekst źródłowyURL
DOI10.1016/j.commatsci.2012.05.056
Rok publikacji2013
Typ publikacjiartykuł w czasopiśmie
Otwarty dostęptak
Czasopismo/seriaComputational Materials Science

Abstract

In this paper we present a Hierarchical Multi-Scale (HMS) model of coupled evolutions of crystallographic texture and plastic anisotropy in plastic forming of polycrystalline metallic alloys. The model exploits the Finite Element formulation to describe the macroscopic deformation of the material. Anisotropy of the plastic properties is derived from a physics-based polycrystalline plasticity micro-scale model by means of virtual experiments. The homogenized micro-scale stress response given by the micro-scale model is approximated by an analytical plastic potential function. The methods to reconstruct the plastic potential upon a sufficient change of the crystallographic texture are discussed. A dedicated stress integration scheme is elaborated to utilize the hierarchy of the models. Cup drawing from circular blanks is considered as an example of sheet forming process. The results from the HMS simulations with updating of texture and anisotropy are compared to the outcomes of the FE model assuming constant anisotropy. Experimental verification of the HMS model is provided for two steel grades and one aluminum alloy. An assessment of the texture evolution calculated by the HMS model reveals very high reliability of the predictions. Macroscopic cup profiles obtained by the HMS model show good agreement with the experiment. A substantial improvement of the predicted cup profile is found for one of the investigated steels. The origin of this enhancement is discussed in the context of evolving plastic anisotropy. (C) 2012 Elsevier B. V. All rights reserved.

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Evolving texture-informed anisotropic yield criterion for sheet forming / J. GAWĄD, D. Banabic, D. S. Comsa, M. Gologanu, A. Van Bael, P. Eyckens, P. Van Houtte, D. Roose // W: NUMISHEET 2014 : the 9th international conference and workshop on Numerical simulation of 3D sheet metal forming processes : 6–10 January 2014, Melbourne, Australia / eds. Jeong Whan Yoon, [et al.]. — [Melbourne] : AIP Publishing, 2013. — (AIP Conference Proceedings ; ISSN 0094-243X ; 1567). — ISBN: 978-0-7354-1195-1. — S. 350–355. — Bibliogr. s. 355, Abstr. — J. Gawąd – dod. afiliacja: KU Leuven, Belgium ; w bazie Web of Science brak afiliacji AGH
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#52556Data dodania: 21.7.2010
A coupled multiscale model of texture evolution and plastic anisotropy / J. GAWĄD, A. Van Bael, S. K. Yerra, G. Samaey, P. Van Houtte, D. Roose // W: NUMIFORM 2010 : the 10th international conference on Numerical Methods in Industrial Forming Processes : Pohang, Republic of Korea : June 13–17, 2010 : book of abstracts / eds. Frédéric Barlat, Young Hoon Moon, Myoung-Gyu Lee ; Pohang University of Science and Technology. — [S. l. : s. n.], 2010. — S. 35. — Pełny tekst W: NUMIFORM 2010 [Dokument elektroniczny] : proceedings of the 10th international conference on Numerical Methods in Industrial Forming Processes : Pohang, Republica of Korea : 13–17 June 2010. — Wersja do Windows. — Dane tekstowe / eds. Frédéric Barlat, Young Hoon Moon, Myoung-Gyu Lee ; American Institute of Physics. — S. l. : American Institute of Physics, cop. 2010. — 1 dysk optyczny. — S. 770–777. — Wymagania systemowe : Adobe Acrobat Reader ; napęd CD-ROM. — Bibliogr. s. 777, Abstr. — J. Gawąd dod. afiliacja : Department of Computer Science, Katholieke Universiteit Leuven, Belgium. — (AIP Conference Proceedings ; vol. 1252). — ISBN 978-0-7354-0799-2