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contributor authorKaan Inal
contributor authorRaja K. Mishra
contributor authorHari M. Simha
date accessioned2017-05-09T00:28:12Z
date available2017-05-09T00:28:12Z
date copyrightApril, 2008
date issued2008
identifier issn0094-4289
identifier otherJEMTA8-27105#021003_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/138082
description abstractA new finite element analysis based on rate dependent crystal plasticity theory has been developed to investigate the effects of second-phase particles on the initiation and propagation of localized deformation in the form of shear bands. The new model can incorporate electron backscatter diffraction data into finite element analyses. The numerical analysis not only accounts for crystallographic texture (and its evolution) but also accounts for grain morphologies. A unit-cell approach has been adopted where an element or a number of elements of the finite element mesh are considered to represent a single crystal within the polycrystal aggregate. Second-phase particles in the form of finite elements with stiff elastic properties are randomly distributed within the unit cell. Numerical simulations of unixial tension, in-plane plane strain tension, and balanced biaxial tension have been performed by models with and without second-phase particles for a direct chill-cast AA5754 aluminum alloy sheet. The effects of various parameters, such as second-phase particle distribution, texture evolution, and strain paths on particle induced localized deformation patterns, are also investigated.
publisherThe American Society of Mechanical Engineers (ASME)
titleNumerical Modeling of Second-Phase Particle Effects on Localized Deformation
typeJournal Paper
journal volume130
journal issue2
journal titleJournal of Engineering Materials and Technology
identifier doi10.1115/1.2840960
journal fristpage21003
identifier eissn1528-8889
keywordsDeformation
keywordsParticulate matter
keywordsShear (Mechanics)
keywordsTexture (Materials)
keywordsComputer simulation
keywordsEngineering simulation
keywordsCrystals
keywordsFinite element analysis AND Plasticity
treeJournal of Engineering Materials and Technology:;2008:;volume( 130 ):;issue: 002
contenttypeFulltext


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