Forced vibration analysis of nano-composite rotating pressurized microbeam reinforced by CNTs based on MCST with temperature-variable material properties

ABSTRACT: In this study, free and forced vibration analysis of nano-composite rotating pressurized microbeam reinforced by carbon nanotubes (CNTs) under magnetic field based on modify couple stress theory (MCST) with temperature-variable material propertiesis presented. Also, the boundary conditions...

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Main Authors: R. Rostami, M. Mohammadimehr, M. Ghannad, A. Jalali
Format: Article
Language:English
Published: Elsevier 2018-03-01
Series:Theoretical and Applied Mechanics Letters
Online Access:http://www.sciencedirect.com/science/article/pii/S2095034918300813
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author R. Rostami
M. Mohammadimehr
M. Ghannad
A. Jalali
author_facet R. Rostami
M. Mohammadimehr
M. Ghannad
A. Jalali
author_sort R. Rostami
collection DOAJ
description ABSTRACT: In this study, free and forced vibration analysis of nano-composite rotating pressurized microbeam reinforced by carbon nanotubes (CNTs) under magnetic field based on modify couple stress theory (MCST) with temperature-variable material propertiesis presented. Also, the boundary conditions at two ends of nano-composite rotating pressurized microbeam reinforced by CNTs are considered as simply supported. The governing equations are obtained based on the Hamilton's principle and then computed these equations by using Navier's solution. The magnetic field is inserted in the thickness direction of the nano-composite microbeam. The effects of various parameters such as angular velocity, temperature changes, and pressure between of the inside and outside, the magnetic field, material length scale parameter, and volume fraction of nano-composite microbeam on the natural frequency and response systemare studied. The results show that with increasing volume fraction of nano-composite microbeam, thickness, material length scale parameter, and magnetic fields, the natural frequency increases. The results of this research can be used for optimization of micro-structures and manufacturing sensors, displacement fluid, and drug delivery. Keywords: Forced vibration analysis, Nano-composite rotating pressurized microbeam, Carbon nanotubes, Modify couple stress theory, Temperature-variable material properties
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spelling doaj.art-0d9e28c077eb4ae7a032929cff2af2f42022-12-21T19:19:14ZengElsevierTheoretical and Applied Mechanics Letters2095-03492018-03-018297108Forced vibration analysis of nano-composite rotating pressurized microbeam reinforced by CNTs based on MCST with temperature-variable material propertiesR. Rostami0M. Mohammadimehr1M. Ghannad2A. Jalali3Department of Solid Mechanics, Faculty of Mechanical Engineering, Shahrood University of Technology, Shahrood, Iran; Department of Solid Mechanics, Faculty of Mechanical Engineering, University of Kashan, Kashan, IranDepartment of Solid Mechanics, Faculty of Mechanical Engineering, University of Kashan, Kashan, Iran; Corresponding authorDepartment of Solid Mechanics, Faculty of Mechanical Engineering, Shahrood University of Technology, Shahrood, IranDepartment of Solid Mechanics, Faculty of Mechanical Engineering, Shahrood University of Technology, Shahrood, IranABSTRACT: In this study, free and forced vibration analysis of nano-composite rotating pressurized microbeam reinforced by carbon nanotubes (CNTs) under magnetic field based on modify couple stress theory (MCST) with temperature-variable material propertiesis presented. Also, the boundary conditions at two ends of nano-composite rotating pressurized microbeam reinforced by CNTs are considered as simply supported. The governing equations are obtained based on the Hamilton's principle and then computed these equations by using Navier's solution. The magnetic field is inserted in the thickness direction of the nano-composite microbeam. The effects of various parameters such as angular velocity, temperature changes, and pressure between of the inside and outside, the magnetic field, material length scale parameter, and volume fraction of nano-composite microbeam on the natural frequency and response systemare studied. The results show that with increasing volume fraction of nano-composite microbeam, thickness, material length scale parameter, and magnetic fields, the natural frequency increases. The results of this research can be used for optimization of micro-structures and manufacturing sensors, displacement fluid, and drug delivery. Keywords: Forced vibration analysis, Nano-composite rotating pressurized microbeam, Carbon nanotubes, Modify couple stress theory, Temperature-variable material propertieshttp://www.sciencedirect.com/science/article/pii/S2095034918300813
spellingShingle R. Rostami
M. Mohammadimehr
M. Ghannad
A. Jalali
Forced vibration analysis of nano-composite rotating pressurized microbeam reinforced by CNTs based on MCST with temperature-variable material properties
Theoretical and Applied Mechanics Letters
title Forced vibration analysis of nano-composite rotating pressurized microbeam reinforced by CNTs based on MCST with temperature-variable material properties
title_full Forced vibration analysis of nano-composite rotating pressurized microbeam reinforced by CNTs based on MCST with temperature-variable material properties
title_fullStr Forced vibration analysis of nano-composite rotating pressurized microbeam reinforced by CNTs based on MCST with temperature-variable material properties
title_full_unstemmed Forced vibration analysis of nano-composite rotating pressurized microbeam reinforced by CNTs based on MCST with temperature-variable material properties
title_short Forced vibration analysis of nano-composite rotating pressurized microbeam reinforced by CNTs based on MCST with temperature-variable material properties
title_sort forced vibration analysis of nano composite rotating pressurized microbeam reinforced by cnts based on mcst with temperature variable material properties
url http://www.sciencedirect.com/science/article/pii/S2095034918300813
work_keys_str_mv AT rrostami forcedvibrationanalysisofnanocompositerotatingpressurizedmicrobeamreinforcedbycntsbasedonmcstwithtemperaturevariablematerialproperties
AT mmohammadimehr forcedvibrationanalysisofnanocompositerotatingpressurizedmicrobeamreinforcedbycntsbasedonmcstwithtemperaturevariablematerialproperties
AT mghannad forcedvibrationanalysisofnanocompositerotatingpressurizedmicrobeamreinforcedbycntsbasedonmcstwithtemperaturevariablematerialproperties
AT ajalali forcedvibrationanalysisofnanocompositerotatingpressurizedmicrobeamreinforcedbycntsbasedonmcstwithtemperaturevariablematerialproperties