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Meshless analysis of cracked functionally graded materials under thermal shock

نویسنده:
M. B. Nazari
,
محمود شریعتی
,
M. R. Eslami
,
بهروز حسنی
,
Mahmoud Shariati
,
Behrooz Hassani
سال
: 2010
چکیده: The element-free Galerkin method which is en-riched intrinsically is applied for fracture analysis of functionally graded materials under mode I steady-state and transient thermal loading. The stress intensity factors are evaluated by means of both equivalent domain integral and displacement correlation technique. Continuum functions and micromechanical model are used to describe the distri-bution of material properties. For thermal shock analysis, the modal decomposition method which is a semi-discretization approach is implemented to obtain the tran-sient temperature field. The accuracy of numerical results is verified using the available reference solution. The re-sults imply that the magnitude of the stress intensity factor gets to a large peak at the early time of the thermal shock

which indicates its significant role in the fracture failure.
یو آر آی: http://libsearch.um.ac.ir:80/fum/handle/fum/3345965
کلیدواژه(گان): Thermoelasticity,Functionally graded material,Element free Galerkin method,Stress intensity factor
کالکشن :
  • ProfDoc
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    Meshless analysis of cracked functionally graded materials under thermal shock

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contributor authorM. B. Nazarien
contributor authorمحمود شریعتیen
contributor authorM. R. Eslamien
contributor authorبهروز حسنیen
contributor authorMahmoud Shariatifa
contributor authorBehrooz Hassanifa
date accessioned2020-06-06T13:12:35Z
date available2020-06-06T13:12:35Z
date issued2010
identifier urihttp://libsearch.um.ac.ir:80/fum/handle/fum/3345965?locale-attribute=fa
description abstractThe element-free Galerkin method which is en-riched intrinsically is applied for fracture analysis of functionally graded materials under mode I steady-state and transient thermal loading. The stress intensity factors are evaluated by means of both equivalent domain integral and displacement correlation technique. Continuum functions and micromechanical model are used to describe the distri-bution of material properties. For thermal shock analysis, the modal decomposition method which is a semi-discretization approach is implemented to obtain the tran-sient temperature field. The accuracy of numerical results is verified using the available reference solution. The re-sults imply that the magnitude of the stress intensity factor gets to a large peak at the early time of the thermal shock

which indicates its significant role in the fracture failure.
en
languageEnglish
titleMeshless analysis of cracked functionally graded materials under thermal shocken
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsThermoelasticityen
subject keywordsFunctionally graded materialen
subject keywordsElement free Galerkin methoden
subject keywordsStress intensity factoren
journal titleMechanikafa
pages20-27
journal volume84
journal issue4
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1034223.html
identifier articleid1034223
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