The size-dependent analysis of multilayered microbridge systems under a moving load/mass based on the modified couple stress theory

被引:48
作者
Khaniki, H. Bakhshi [1 ]
Hosseini-Hashemi, Sh. [1 ]
机构
[1] Iran Univ Sci & Technol, Sch Mech Engn, Tehran 1684613114, Iran
关键词
VIBRATION ANALYSIS; FORCED VIBRATION; BENDING ANALYSIS; MICROBEAM; MICROPLATE; NANOBEAMS; SURFACE;
D O I
10.1140/epjp/i2017-11466-0
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
In this study, the dynamical behavior of mutlilayered microbeam systems with respect to a moving load/ mass is investigated. The Winkler elastic foundation beam is used to model the coupling between layers and small-scale effects are modeled by modified couple stress theory. Equations of motion are achieved using Hamilton's principle and the solution process is proposed for a different number of layers. For double-and three-layered microbridge systems, an analytical solution is presented using Laplace transform and moreover, for higher-layered MMBS, a state space method is employed. A comprehensive parametric study is presented to clarify the effects of various parameters such as small-scale effect, coupling, the moving velocity, number of layers, etc. It is shown that material variation and scale effects changes the behavior of microbridge systems and have a significant effect on the dynamic deformation under a moving nanoparticle which could be used in understanding and designing more efficient nanostructures. Accordingly, with the brand new discussions on moving atoms, molecules, cells, nanocars, nanotrims, point loads on different nanosctructures using scanning tunneling microscopes (STM) and atomic force microscopes (AFM), this study could be a step forward in understanding, predicting and controlling such kind of behaviors.
引用
收藏
页数:18
相关论文
共 42 条
[1]   Bending analysis of embedded carbon nanotubes resting on an elastic foundation using strain gradient theory [J].
Akgoz, Bekir ;
Civalek, Omer .
ACTA ASTRONAUTICA, 2016, 119 :1-12
[2]   Bending analysis of FG microbeams resting on Winkler elastic foundation via strain gradient elasticity [J].
Akgoz, Bekir ;
Civalek, Omer .
COMPOSITE STRUCTURES, 2015, 134 :294-301
[3]   Size dependent bending and vibration analysis of functionally graded micro beams based on modified couple stress theory and neutral surface position [J].
Al-Basyouni, K. S. ;
Tounsi, Abdelouahed ;
Mahmoud, S. R. .
COMPOSITE STRUCTURES, 2015, 125 :621-630
[4]   Vibration and bending analysis of a sandwich microbeam with two integrated piezo-magnetic face-sheets [J].
Arefi, Mohammad ;
Zenkour, Ashraf M. .
COMPOSITE STRUCTURES, 2017, 159 :479-490
[5]   Nonlinear dynamics of cantilevered microbeams based on modified couple stress theory [J].
Dai, H. L. ;
Wang, Y. K. ;
Wang, L. .
INTERNATIONAL JOURNAL OF ENGINEERING SCIENCE, 2015, 94 :103-112
[6]   Analytical Solution for Free Vibration of a Variable Cross-section Nonlocal Nanobeam [J].
Hashemi, S. Hosseini ;
Khaniki, H. Bakhshi .
INTERNATIONAL JOURNAL OF ENGINEERING, 2016, 29 (05) :688-696
[7]   DYNAMIC BEHAVIOR OF MULTI-LAYERED VISCOELASTIC NANOBEAM SYSTEM EMBEDDED IN A VISCOELASTIC MEDIUM WITH A MOVING NANOPARTICLE [J].
Hashemi, Sh. Hosseini ;
Khaniki, H. Bakhshi .
JOURNAL OF MECHANICS, 2017, 33 (05) :559-575
[8]  
Hashemi SH, 2017, INT J NANO DIMENS, V8, P70, DOI 10.22034/ijnd.2017.24378
[9]   Dynamic response of multiple nanobeam system under a moving nanoparticle [J].
Hashemi, Shahrokh Hosseini ;
Khaniki, Hossein Bakhshi .
ALEXANDRIA ENGINEERING JOURNAL, 2018, 57 (01) :343-356
[10]   Dynamics of a micro scale Timoshenko beam subjected to a moving micro particle based on the modified couple stress theory [J].
Jafari-Talookolaei, R. A. ;
Abedi, M. ;
Simsek, M. ;
Attar, M. .
JOURNAL OF VIBRATION AND CONTROL, 2018, 24 (03) :527-548