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contributor authorFadi K. Abu-Farha
contributor authorMarwan K. Khraisheh
date accessioned2017-05-09T00:16:19Z
date available2017-05-09T00:16:19Z
date copyrightJanuary, 2005
date issued2005
identifier issn0094-4289
identifier otherJEMTA8-27065#159_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/131902
description abstractCurrently available models describing superplastic deformation are mostly based on uniaxial tensile test data and assume isotropic behavior, thus leading to limited predictive capabilities of material deformation and failure. In this work we present a multi-axial microstructure-based constitutive model that describes the anisotropic superplastic deformation within the continuum theory of viscoplasticity with internal variables. The model accounts for microstructural evolution and employs a generalized anisotropic dynamic yield function. The anisotropic yield function can describe the evolution of the initial state of anisotropy through the evolution of unit vectors defining the direction of anisotropy during deformation. The generalized model is then reduced to the plane stress condition to simulate sheet metal stretching in superplastic blow forming using pressurized gas. Different ratios of biaxial stretching were investigated, including the case simulating the uniaxial loading condition, where the model successfully captured the uniaxial experimental data. The model is also used to develop a new forming pressure profile that accounts for anisotropy and microstructural evolution.
publisherThe American Society of Mechanical Engineers (ASME)
titleModeling of Anisotropic Deformation in Superplastic Sheet Metal Stretching
typeJournal Paper
journal volume127
journal issue1
journal titleJournal of Engineering Materials and Technology
identifier doi10.1115/1.1839216
journal fristpage159
journal lastpage164
identifier eissn1528-8889
keywordsPressure
keywordsDeformation
keywordsSheet metal
keywordsSuperplasticity
keywordsStress
keywordsAnisotropy
keywordsConstitutive equations AND Modeling
treeJournal of Engineering Materials and Technology:;2005:;volume( 127 ):;issue: 001
contenttypeFulltext


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