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Scale-dependent pull-in instability of functionally graded carbon nanotubes-reinforced piezoelectric tuning nano-actuator considering finite temperature and conductivity corrections of Casimir force
- Source :
- Composite Structures. 176:460-470
- Publication Year :
- 2017
- Publisher :
- Elsevier BV, 2017.
-
Abstract
- A scale-dependent analytical model is presented to solve the nonlinear pull-in instability of functionally graded carbon nanotubes (CNTs) reinforced nano-actuator with piezoelectric layer considering high order-corrected electrostatic pressure and finite temperature and conductivity corrections of Casimir force. Based on Eringen’s nonlocal elasticity theory considering the long range forces among atoms, and geometrical nonlinearity, the electro-thermo-mechanical coupling governing equation of nano-actuator is derived, and solved by utilizing natural mode function and Galerkin’s decomposition method. The higher-order corrected model of electrostatic force with fringing field effect accounting for large gap and geometrical nonlinearity is employed. The results indicate that pull-in voltage decreases with increase of positive piezoelectric effect but increases with increment of negative piezoelectric effect. Pull-in voltage declines as the piezoelectric layer thickness of nano-actuator increases. Casimir force appears in more significant effect on the pull-in voltage of nano-actuator than that of van der Waals force, which shows that the analysis of nanoscale devices cannot neglect the influences of intermolecular forces within sub-micron separations. Finally, the coupling influences of van der Waals force and Capillary force on pull-in voltage are compared.
- Subjects :
- Materials science
Piezoelectric coefficient
Condensed matter physics
Electrostatic force microscope
Intermolecular force
02 engineering and technology
Carbon nanotube
021001 nanoscience & nanotechnology
Piezoelectricity
law.invention
Casimir effect
symbols.namesake
020303 mechanical engineering & transports
Classical mechanics
0203 mechanical engineering
law
Ceramics and Composites
symbols
van der Waals force
0210 nano-technology
Conservative force
Civil and Structural Engineering
Subjects
Details
- ISSN :
- 02638223
- Volume :
- 176
- Database :
- OpenAIRE
- Journal :
- Composite Structures
- Accession number :
- edsair.doi...........999027ef07092c17eb312c7af8f760d7
- Full Text :
- https://doi.org/10.1016/j.compstruct.2017.05.014