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Dynamic stability of smart sandwich beams with electro-rheological core resting on elastic foundation

Author:
رسول طبسیان
,
جلیل رضائی پژند
,
Rassoul Tabassian
,
Jalil Rezaee Pazhand
Year
: 2013
Abstract: This article focuses on dynamic stability of smart sandwich beams resting on Winkler

elastic foundation subjected to harmonic axial loads. To increase the dynamic buckling

load and the stability region of the beam, an electro-rheological layer is adhered as a

core. The finite element method is employed to derive a three layer smart sandwich

beam element. By inspecting dynamic response of the beam in different load amplitudes,

critical dynamic loads are calculated. Parametric study is done to investigate effects of

various parameters such as beam geometry, foundation stiffness, static load, applied

voltage and properties of core layer on critical dynamic loads and stability regions of the

beam. This study indicates that by applying electric field to the electro-rheological core,

dynamic critical load and consequently, dynamic stability of the beam increase efficiently.

Furthermore, the elastic foundation reduces the unstable region and increases the

critical dynamic load of the smart beam. Proper use of these parameters makes the

beam less sensitive to axial harmonic loading by relocating the instability region.
URI: https://libsearch.um.ac.ir:443/fum/handle/fum/3346938
Keyword(s): Dynamic stability,elastic foundation,smart sandwich beam,electro-rheological fluids,

finite element method
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    Dynamic stability of smart sandwich beams with electro-rheological core resting on elastic foundation

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contributor authorرسول طبسیانen
contributor authorجلیل رضائی پژندen
contributor authorRassoul Tabassianfa
contributor authorJalil Rezaee Pazhandfa
date accessioned2020-06-06T13:14:02Z
date available2020-06-06T13:14:02Z
date issued2013
identifier urihttps://libsearch.um.ac.ir:443/fum/handle/fum/3346938?locale-attribute=en
description abstractThis article focuses on dynamic stability of smart sandwich beams resting on Winkler

elastic foundation subjected to harmonic axial loads. To increase the dynamic buckling

load and the stability region of the beam, an electro-rheological layer is adhered as a

core. The finite element method is employed to derive a three layer smart sandwich

beam element. By inspecting dynamic response of the beam in different load amplitudes,

critical dynamic loads are calculated. Parametric study is done to investigate effects of

various parameters such as beam geometry, foundation stiffness, static load, applied

voltage and properties of core layer on critical dynamic loads and stability regions of the

beam. This study indicates that by applying electric field to the electro-rheological core,

dynamic critical load and consequently, dynamic stability of the beam increase efficiently.

Furthermore, the elastic foundation reduces the unstable region and increases the

critical dynamic load of the smart beam. Proper use of these parameters makes the

beam less sensitive to axial harmonic loading by relocating the instability region.
en
languageEnglish
titleDynamic stability of smart sandwich beams with electro-rheological core resting on elastic foundationen
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsDynamic stabilityen
subject keywordselastic foundationen
subject keywordssmart sandwich beamen
subject keywordselectro-rheological fluidsen
subject keywords

finite element method
en
journal titleJournal of Sandwich Structures and Materialsfa
pages25-44
journal volume15
journal issue1
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1036016.html
identifier articleid1036016
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