Two-side accurate analytical estimates of the pull-in parameters of a carbon nanotube switch clamped at one end under electrostatic actuation are provided by considering the proper expressions of the electrostatic force and van der Waals interactions for a carbon nanotube, as well as the contribution of the charge concentration at the free end. According to the Euler-Bernoulli beam theory, the problem is governed by a fourth-order nonlinear boundary value problem. Two-side estimates on the centreline deflection are derived. Then, very accurate lower and upper bounds to the pull-in voltage and deflection are obtained as function of the geometrical and material parameters. The analytical predictions are found to agree remarkably well with the...
This paper deals with the pull-in instability of cantilever nano-switches subjected to electrostatic...
AbstractIn this paper, a distributed parameter model is used to study the pull-in instability of can...
* Abstract- Carbon nanotube (CNT) is an ideal candidate for future nanoelectronics because of its sm...
Two-side accurate analytical estimates of the pull-in parameters of a carbon nanotube switch clamped...
Carbon nanotubes (CNTs) display a number of attractive electronic and mechanical properties that are...
In this paper, carbon nanotube-based nanoelectromechanical systems (NEMS) are nanofabricated and tes...
Carbon nano-tube (CNT) is applied to fabricate nano-probes, nano-switches, nano-sensors and nano- ac...
Micro- or Nano-Electro-Mechanical Systems, MEMS-NEMS, are currently employed in a wide variety of ap...
In this paper, a Finite Element Method based simulation tool is used to estimate the pull-in phenome...
Cette thèse de 130 pages a été reproduite en 50 exemplaires au format 17x25 cm. Ceux qui seraient in...
The problem of pull-in instability of a cantilever micro- or nano-switch under electrostatic forces ...
We simulate the electromechanical behavior of freestanding and clamped carbon nanotubes (CNTs) subje...
In this paper, analytical closed-form expressions to accurately estimate the pull-in characteristics...
Excellent properties like low density, high mechanical stiffness as well as an outstanding thermal a...
AbstractThis paper deals with the study of the small scale effect on the pull-in instability of nano...
This paper deals with the pull-in instability of cantilever nano-switches subjected to electrostatic...
AbstractIn this paper, a distributed parameter model is used to study the pull-in instability of can...
* Abstract- Carbon nanotube (CNT) is an ideal candidate for future nanoelectronics because of its sm...
Two-side accurate analytical estimates of the pull-in parameters of a carbon nanotube switch clamped...
Carbon nanotubes (CNTs) display a number of attractive electronic and mechanical properties that are...
In this paper, carbon nanotube-based nanoelectromechanical systems (NEMS) are nanofabricated and tes...
Carbon nano-tube (CNT) is applied to fabricate nano-probes, nano-switches, nano-sensors and nano- ac...
Micro- or Nano-Electro-Mechanical Systems, MEMS-NEMS, are currently employed in a wide variety of ap...
In this paper, a Finite Element Method based simulation tool is used to estimate the pull-in phenome...
Cette thèse de 130 pages a été reproduite en 50 exemplaires au format 17x25 cm. Ceux qui seraient in...
The problem of pull-in instability of a cantilever micro- or nano-switch under electrostatic forces ...
We simulate the electromechanical behavior of freestanding and clamped carbon nanotubes (CNTs) subje...
In this paper, analytical closed-form expressions to accurately estimate the pull-in characteristics...
Excellent properties like low density, high mechanical stiffness as well as an outstanding thermal a...
AbstractThis paper deals with the study of the small scale effect on the pull-in instability of nano...
This paper deals with the pull-in instability of cantilever nano-switches subjected to electrostatic...
AbstractIn this paper, a distributed parameter model is used to study the pull-in instability of can...
* Abstract- Carbon nanotube (CNT) is an ideal candidate for future nanoelectronics because of its sm...