Modeling of the Damage Mechanisms in AlMgSi Alloys

Modeling of the Damage Mechanisms in AlMgSi Alloys
Author :
Publisher : Presses univ. de Louvain
Total Pages : 270
Release :
ISBN-10 : 2874630179
ISBN-13 : 9782874630170
Rating : 4/5 (170 Downloads)

Book Synopsis Modeling of the Damage Mechanisms in AlMgSi Alloys by : Denis Lassance

Download or read book Modeling of the Damage Mechanisms in AlMgSi Alloys written by Denis Lassance and published by Presses univ. de Louvain. This book was released on 2006 with total page 270 pages. Available in PDF, EPUB and Kindle. Book excerpt: With the growth in importance of the aluminium industry, has come increased demand to invest into the quality improvement of the different aluminium based hot extruded products. One of the main mechanisms, which can influence deformation at high temperature within the 6xxx aluminium, is linked to the presence of the AlFeSi intermetallic phases. These phases severely restrict hot workability when present as hard and brittle plate-like precipitates b-AlFeSi. Damage initiation occurs in these alloys by decohesion or fracture of these intermetallic inclusions. The understanding and modeling of the deformation and fracture behavior of aluminium alloys at room and at hot working temperature is very important for optimizing manufacturing processes such as extrusion. The ductility of 6xxx aluminium alloys can be directly related to chemical composition and to the microstructural evolution occurring during the heat treatment procedures preceding extrusion if proper physics based deformation and fracture models are used. In this thesis, room temperature and hot tensile tests are adopted to address the problem xperimentally. The damage evolution mechanisms is defined at various temperatures and a micromechanics based model of the Gurson type considering several populations of cavities nucleated by different second phase particles groups is developed on the basis of the experimental observations. This model allows relating quantitatively microstructure and ductility at various temperatures strain rates and stress triaxialities. Finite element simulations based on an enhanced micromechanics-based model are used to validate the model. Finally, the effect of some key factors that determine the extrudability of aluminium is also discussed and a correlation between the ductility calculations in uniaxial tension and the maximum extrusion speed is developed for one defined profile.


Modeling of the Damage Mechanisms in AlMgSi Alloys Related Books

Modeling of the Damage Mechanisms in AlMgSi Alloys
Language: en
Pages: 270
Authors: Denis Lassance
Categories: Science
Type: BOOK - Published: 2006 - Publisher: Presses univ. de Louvain

DOWNLOAD EBOOK

With the growth in importance of the aluminium industry, has come increased demand to invest into the quality improvement of the different aluminium based hot e
Nonlinear Analyses of Laminated Plates and Shells with Damage
Language: en
Pages: 797
Authors: Yi-Ming Fu
Categories: Technology & Engineering
Type: BOOK - Published: 2013 - Publisher: WIT Press

DOWNLOAD EBOOK

The contents of this book are related to composite mechanics, nonlinear plate and shell mechanics, damage mechanics, elasto-plastic mechanics, visco-elastic mec
Low Cycle Fatigue and Elasto-Plastic Behaviour of Materials
Language: en
Pages: 781
Authors: K.T. Rie
Categories: Technology & Engineering
Type: BOOK - Published: 2012-12-06 - Publisher: Springer Science & Business Media

DOWNLOAD EBOOK

In 1979 the first InternationalSymposium on Low CycleFatigue and Elasto-Plastic Behaviour of Materials was held in Stuttgart, FRG. Since then research in low cy
Light Metals 2014
Language: en
Pages: 1351
Authors: John Grandfield
Categories: Technology & Engineering
Type: BOOK - Published: 2016-12-23 - Publisher: Springer

DOWNLOAD EBOOK

The Light Metals symposia are a key part of the TMS Annual Meeting & Exhibition, presenting the most recent developments, discoveries, and practices in primary
Low Cycle Fatigue
Language: en
Pages: 1289
Authors: Harvey D. Solomon
Categories: Engineering design
Type: BOOK - Published: 1988 - Publisher: ASTM International

DOWNLOAD EBOOK