Investigation of the surface roughness effect on the nonlinear size-dependent pull-in instability of the beam-type nano-actuator

被引:3
|
作者
Vanani, S. M. Fatemi [1 ]
Beni, Y. Tadi [2 ,3 ]
机构
[1] Islamic Azad Univ, Shahrekord Branch, Young Researchers & Elite Club, Shahrekord, Iran
[2] Shahrekourd Univ, Fac Engn, Shahrekourd, Iran
[3] Shahrekord Univ, Nanotechnol Res Ctr, Shahrekord 8818634141, Iran
关键词
Nano-actuator; Size-dependent pull-in instability; Surface roughness; Van der Waals force; DQM; 85; 85+j; 46; 32; +x; 70; -P; 77; 65; -J; DER-WAALS FORCE; STRAIN GRADIENT ELASTICITY; FREE-VIBRATION ANALYSIS; BOUNDARY-CONDITIONS; CASIMIR FORCE; DIFFERENTIAL QUADRATURE; BEHAVIOR; VOLTAGE; NEMS; STABILITY;
D O I
10.1007/s12648-020-01693-8
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
In this paper, the effect of surface roughness on the pull-in behavior of beam-type nano-actuator in the presence of intermolecular Van der Waals force has been investigated. In order to model the surface roughness, the roughness has been modeled as a step on the fixed electrode. Based on the modified couple stress theory and by using Hamilton's principle, the governing equation and boundary conditions have been derived for the Euler-Bernoulli beam model. The differential quadrature method has been used to solve the nonlinear governing equations of the system. The results showed that the presence of roughness on the fixed electrode leads to an increase in the displacement of the beam and a reduction in the pull-in voltage, especially when the roughness is at the end of the beam and has considerable height. In this case, the freestanding behavior of the nano-actuator and the effect of roughness on the critical intermolecular force in the absence of electrostatic force are also evaluated. The results revealed a decrease in the critical intermolecular force due to the presence of roughness. However, increasing the material length scale parameters leads to an increase in the pull-in voltage and the freestanding values. Also, the size effect parameter decreases the displacement at the end of the beam.
引用
收藏
页码:253 / 265
页数:13
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