THERMAL EFFECT ON FREE VIBRATION AND BUCKLING OF A DOUBLE-MICROBEAM SYSTEM

The paper investigates the problem of free vibration and buckling of an Euler-Bernoulli double-microbeam system (EBDMBS) under the compressive axial loading with a temperature change effect. The system is composed of two identical, parallel simply-supported microbeams which are continuously joined b...

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Main Authors: Marija Stamenković Atanasov, Danilo Karličić, Predrag Kozić, Goran Janevski
Format: Article
Language:English
Published: University of Niš 2017-04-01
Series:Facta Universitatis. Series: Mechanical Engineering
Online Access:http://casopisi.junis.ni.ac.rs/index.php/FUMechEng/article/view/2259
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spelling doaj-61ec44b96f0e4339aa812e746903b6f12020-11-25T02:10:16ZengUniversity of NišFacta Universitatis. Series: Mechanical Engineering0354-20252335-01642017-04-01151456210.22190/FUME161115007S1262THERMAL EFFECT ON FREE VIBRATION AND BUCKLING OF A DOUBLE-MICROBEAM SYSTEMMarija Stamenković AtanasovDanilo KarličićPredrag KozićGoran JanevskiThe paper investigates the problem of free vibration and buckling of an Euler-Bernoulli double-microbeam system (EBDMBS) under the compressive axial loading with a temperature change effect. The system is composed of two identical, parallel simply-supported microbeams which are continuously joined by the Pasternak’s elastic layer. Analytical expressions for the critical buckling load, critical buckling temperature, natural frequencies and frequencies of transverse vibration of the EBDMBS represented by the ratios are derived and validated by the results found in the literature. Also analytical expressions are obtained for various buckling states and vibration-phase of the EBDMBS. The temperature change effect is assumed to have an influence on both the microbeams. The length scale parameter, temperature change effect, critical buckling load, thickness/material parameter, Pasternak’s parameter and Poisson’s effect are discussed in detail. Also, as a clearer display of the thermo-mechanical response of EBDMBS, the paper introduces a critical scale load ratio of the modified and the local critical buckling loads in low-temperature environs. Numerical results show that the critical buckling temperatures for classical theories are always higher than the critical buckling temperature for MCST systems.http://casopisi.junis.ni.ac.rs/index.php/FUMechEng/article/view/2259
collection DOAJ
language English
format Article
sources DOAJ
author Marija Stamenković Atanasov
Danilo Karličić
Predrag Kozić
Goran Janevski
spellingShingle Marija Stamenković Atanasov
Danilo Karličić
Predrag Kozić
Goran Janevski
THERMAL EFFECT ON FREE VIBRATION AND BUCKLING OF A DOUBLE-MICROBEAM SYSTEM
Facta Universitatis. Series: Mechanical Engineering
author_facet Marija Stamenković Atanasov
Danilo Karličić
Predrag Kozić
Goran Janevski
author_sort Marija Stamenković Atanasov
title THERMAL EFFECT ON FREE VIBRATION AND BUCKLING OF A DOUBLE-MICROBEAM SYSTEM
title_short THERMAL EFFECT ON FREE VIBRATION AND BUCKLING OF A DOUBLE-MICROBEAM SYSTEM
title_full THERMAL EFFECT ON FREE VIBRATION AND BUCKLING OF A DOUBLE-MICROBEAM SYSTEM
title_fullStr THERMAL EFFECT ON FREE VIBRATION AND BUCKLING OF A DOUBLE-MICROBEAM SYSTEM
title_full_unstemmed THERMAL EFFECT ON FREE VIBRATION AND BUCKLING OF A DOUBLE-MICROBEAM SYSTEM
title_sort thermal effect on free vibration and buckling of a double-microbeam system
publisher University of Niš
series Facta Universitatis. Series: Mechanical Engineering
issn 0354-2025
2335-0164
publishDate 2017-04-01
description The paper investigates the problem of free vibration and buckling of an Euler-Bernoulli double-microbeam system (EBDMBS) under the compressive axial loading with a temperature change effect. The system is composed of two identical, parallel simply-supported microbeams which are continuously joined by the Pasternak’s elastic layer. Analytical expressions for the critical buckling load, critical buckling temperature, natural frequencies and frequencies of transverse vibration of the EBDMBS represented by the ratios are derived and validated by the results found in the literature. Also analytical expressions are obtained for various buckling states and vibration-phase of the EBDMBS. The temperature change effect is assumed to have an influence on both the microbeams. The length scale parameter, temperature change effect, critical buckling load, thickness/material parameter, Pasternak’s parameter and Poisson’s effect are discussed in detail. Also, as a clearer display of the thermo-mechanical response of EBDMBS, the paper introduces a critical scale load ratio of the modified and the local critical buckling loads in low-temperature environs. Numerical results show that the critical buckling temperatures for classical theories are always higher than the critical buckling temperature for MCST systems.
url http://casopisi.junis.ni.ac.rs/index.php/FUMechEng/article/view/2259
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AT danilokarlicic thermaleffectonfreevibrationandbucklingofadoublemicrobeamsystem
AT predragkozic thermaleffectonfreevibrationandbucklingofadoublemicrobeamsystem
AT goranjanevski thermaleffectonfreevibrationandbucklingofadoublemicrobeamsystem
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