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A MULTI-SPRING MODEL FOR BUCKLING ANALYSIS OF CRACKED TIMOSHENKO NANOBEAMS BASED ON MODIFIED COUPLE STRESS THEORY

نویسنده:
مجید اکبرزاده خورشیدی
,
محمود شریعتی
,
majid akbarzadeh khorshidi
,
Mahmoud Shariati
سال
: 2017
چکیده: This paper develops a cracked nanobeam model and presents buckling analysis of this developed model based on a modified couple stress theory. The Timoshenko beam theory and simply supported boundary conditions are considered. This nonclassical model contains a material length scale parameter and can interpret the size effect. The cracked nanobeam is modeled as two segments connected by two equivalent springs (longitudinal and rotational). This model promotes discontinuity in rotation of the beam and additionally considers discontinuity in longitudinal displacement due to presence of the crack. Therefore, this multi-spring model can consider coupled effects between the axial force and bending moment at the cracked section. The generalized differential quadrature (GDQ) method is employed to discretize the governing differential equations, boundary and continuity conditions. The influences of crack location, crack severity, material length scale parameter and flexibility constants of the presented spring model on the critical buckling load are studied.
یو آر آی: http://libsearch.um.ac.ir:80/fum/handle/fum/3362097
کلیدواژه(گان): buckling,crack,modified couple stress theory,Timoshenko nanobeam,spring model
کالکشن :
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    A MULTI-SPRING MODEL FOR BUCKLING ANALYSIS OF CRACKED TIMOSHENKO NANOBEAMS BASED ON MODIFIED COUPLE STRESS THEORY

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contributor authorمجید اکبرزاده خورشیدیen
contributor authorمحمود شریعتیen
contributor authormajid akbarzadeh khorshidifa
contributor authorMahmoud Shariatifa
date accessioned2020-06-06T13:36:57Z
date available2020-06-06T13:36:57Z
date issued2017
identifier urihttp://libsearch.um.ac.ir:80/fum/handle/fum/3362097?locale-attribute=fa
description abstractThis paper develops a cracked nanobeam model and presents buckling analysis of this developed model based on a modified couple stress theory. The Timoshenko beam theory and simply supported boundary conditions are considered. This nonclassical model contains a material length scale parameter and can interpret the size effect. The cracked nanobeam is modeled as two segments connected by two equivalent springs (longitudinal and rotational). This model promotes discontinuity in rotation of the beam and additionally considers discontinuity in longitudinal displacement due to presence of the crack. Therefore, this multi-spring model can consider coupled effects between the axial force and bending moment at the cracked section. The generalized differential quadrature (GDQ) method is employed to discretize the governing differential equations, boundary and continuity conditions. The influences of crack location, crack severity, material length scale parameter and flexibility constants of the presented spring model on the critical buckling load are studied.en
languageEnglish
titleA MULTI-SPRING MODEL FOR BUCKLING ANALYSIS OF CRACKED TIMOSHENKO NANOBEAMS BASED ON MODIFIED COUPLE STRESS THEORYen
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsbucklingen
subject keywordscracken
subject keywordsmodified couple stress theoryen
subject keywordsTimoshenko nanobeamen
subject keywordsspring modelen
journal titleJournal of Theoretical and Applied Mechanicsfa
pages1127-1139
journal volume55
journal issue4
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1064932.html
identifier articleid1064932
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