Surface stress effect on the pull-in instability of circular nanoplates

被引:61
作者
Ansari, R. [1 ]
Gholami, R. [2 ]
Shojaei, M. Faghih [1 ]
Mohammadi, V. [1 ]
Sahmani, S. [1 ]
机构
[1] Univ Guilan, Dept Mech Engn, Rasht, Iran
[2] Islamic Azad Univ, Dept Mech Engn, Lahijan Branch, Lahijan, Iran
关键词
Nanomechanics; Circular plate; Pull-in phenomena; Surface stress; GDQ method; DEPENDENT ELASTIC PROPERTIES; STRAIN GRADIENT PLASTICITY; REDUCED-ORDER MODEL; CARBON NANOTUBES; BEHAVIOR; VIBRATION; FILMS; PLATES; MEMS; MECHANICS;
D O I
10.1016/j.actaastro.2014.05.020
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
The prime aim of the current study is to investigate the pull-in instability characteristics of hydrostatically and electrostatically actuated circular nanoplates including surface stress effect. Gurtin-Murdoch elasticity theory is incorporated into the classical plate theory to develop a non-classical plate model considering surface stress effect. The governing size-dependent differential equations of a hydrostatically and electrostatically actuated circular nanoplate are discretized along with simply-supported and clamped boundary conditions using the generalized differential quadrature (GDQ) method. Selected numerical results are given to indicate the capability of the present size-dependent plate model for predicting the normalized pull-in voltage and pull-in hydrostatic pressure of nanoplates with inclusion surface stress effect. It is found that the pull-in phenomenon of actuated nanoplate is strongly size-dependent. The results indicate that surface stress effect plays a more significant role in the pull-in phenomenon of nanoplates of lower thicknesses. This investigation might be helpful to evaluate the mechanical characteristics of electrostatical actuators. (C) 2014 IAA. Published by Elsevier Ltd. All rights reserved.
引用
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页码:140 / 150
页数:11
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