An improved theoretical approach is proposed to predict the dynamic behavior of long, slender and flexible microcantilevers affected by squeeze-film damping at low ambient pressures. Our approach extends recent continuum gas damping models (Veijola 2004 J. Micromech. Microeng. 14 1109-18, Gallis and Torczynski 2004 J. Microelectromech. Syst. 13 653-9), which were originally derived for a rigid oscillating plate near a wall, to flexible microcantilevers for calculating and predicting squeeze-film damping ratios of higher order bending modes at reduced ambient pressures. Theoretical frequency response functions are derived for a flexible microcantilever beam excited both inertially and via external forcing. Experiments performed carefully at ...
The reliable estimation of squeeze-film damping (SQFD) is a prerequisite for the design of many micr...
In this study the dynamic behaviour of perforated microplates oscillating under the effect of squeez...
Structural vibration studies of various MEMS structures have revealed that whenever a suspended flat...
An improved theoretical approach is proposed to predict the dynamic behavior of long, slender and fl...
An improved theoretical approach is proposed to predict the dynamic behavior of long, slender and fl...
Predicting the gas damping of microcantilevers oscillating in different vibration modes in unbounded...
This paper presents an investigation into the nonlinear effect of squeeze-film damping on the respon...
Squeeze-film damping of flexible microcantilevers at low ambient pressures: theory and experimen
The functionality of atomic force microscopy (AFM) and nanomechanical sensing can be enhanced using ...
Oscillating microplates attached to microbeams is the main part of many microresonators. There are s...
Abstract Dynamic performance has long been critical for micro-electro-mechanical system (MEMS) devic...
We present an analytical model that gives the values of squeeze film damping and spring coefficients...
Squeeze-film damping plays a significant role in the performance of micro-resonators because it det...
This document proposes a formulation of the squeeze film air damping in micro-plates. The nonlinear ...
The static and dynamic behavior of a MEMS subjected to thermoelastic and squeeze-film effects is inv...
The reliable estimation of squeeze-film damping (SQFD) is a prerequisite for the design of many micr...
In this study the dynamic behaviour of perforated microplates oscillating under the effect of squeez...
Structural vibration studies of various MEMS structures have revealed that whenever a suspended flat...
An improved theoretical approach is proposed to predict the dynamic behavior of long, slender and fl...
An improved theoretical approach is proposed to predict the dynamic behavior of long, slender and fl...
Predicting the gas damping of microcantilevers oscillating in different vibration modes in unbounded...
This paper presents an investigation into the nonlinear effect of squeeze-film damping on the respon...
Squeeze-film damping of flexible microcantilevers at low ambient pressures: theory and experimen
The functionality of atomic force microscopy (AFM) and nanomechanical sensing can be enhanced using ...
Oscillating microplates attached to microbeams is the main part of many microresonators. There are s...
Abstract Dynamic performance has long been critical for micro-electro-mechanical system (MEMS) devic...
We present an analytical model that gives the values of squeeze film damping and spring coefficients...
Squeeze-film damping plays a significant role in the performance of micro-resonators because it det...
This document proposes a formulation of the squeeze film air damping in micro-plates. The nonlinear ...
The static and dynamic behavior of a MEMS subjected to thermoelastic and squeeze-film effects is inv...
The reliable estimation of squeeze-film damping (SQFD) is a prerequisite for the design of many micr...
In this study the dynamic behaviour of perforated microplates oscillating under the effect of squeez...
Structural vibration studies of various MEMS structures have revealed that whenever a suspended flat...