Squeeze-film damping plays a significant role in the performance of micro-resonators because it determines their quality factors. Perforations in microstructures are often used to control the squeeze-film damping in micro-resonators. To model the perforation effects on the squeeze-film damping, many analytical models have been proposed, however, most of the previous models have been concerned with the squeeze-film damping due to the normal motion between the perforated vibrating plate and a fixed substrate, while there is a lack of works that model the squeeze-film damping of perforated torsion microplates, which are also widely used in MEMS devices. This paper presents an analytical model for the squeeze-film damping of perforated torsion...
Oscillating microplates attached to microbeams is the main part of many microresonators and micro-el...
Many MEMS devices employ parallel plates for capacitive sensing and actuation. The desire to get a s...
Abstract—We present a comprehensive analytical model of squeeze-film damping in perforated 3-D micro...
Squeeze-film damping plays a significant role in the performance of micro-resonators because it det...
The squeeze-film damping in perforated structures is modelled using a modified Reynolds equation tha...
Closed-form expressions for the stiffness and the damping coefficients of a squeeze film are derived...
Oscillating microplates attached to microbeams is the main part of many microresonators. There are s...
Squeeze-film effects of perforated plates for small amplitude vibration are analyzed through modifie...
Several analytical models exist for evaluating squeeze film damping in rigid rectangular perforated ...
The reliable estimation of squeeze-film damping (SQFD) is a prerequisite for the design of many micr...
Abstract Dynamic performance has long been critical for micro-electro-mechanical system (MEMS) devic...
In this study the dynamic behaviour of perforated microplates oscillating under the effect of squeez...
We present an analytical model that gives the values of squeeze film damping and spring coefficients...
This document proposes a formulation of the squeeze film air damping in micro-plates. The nonlinear ...
We present a comprehensive analytical model of squeeze-film damping in perforated 3-D microelectrome...
Oscillating microplates attached to microbeams is the main part of many microresonators and micro-el...
Many MEMS devices employ parallel plates for capacitive sensing and actuation. The desire to get a s...
Abstract—We present a comprehensive analytical model of squeeze-film damping in perforated 3-D micro...
Squeeze-film damping plays a significant role in the performance of micro-resonators because it det...
The squeeze-film damping in perforated structures is modelled using a modified Reynolds equation tha...
Closed-form expressions for the stiffness and the damping coefficients of a squeeze film are derived...
Oscillating microplates attached to microbeams is the main part of many microresonators. There are s...
Squeeze-film effects of perforated plates for small amplitude vibration are analyzed through modifie...
Several analytical models exist for evaluating squeeze film damping in rigid rectangular perforated ...
The reliable estimation of squeeze-film damping (SQFD) is a prerequisite for the design of many micr...
Abstract Dynamic performance has long been critical for micro-electro-mechanical system (MEMS) devic...
In this study the dynamic behaviour of perforated microplates oscillating under the effect of squeez...
We present an analytical model that gives the values of squeeze film damping and spring coefficients...
This document proposes a formulation of the squeeze film air damping in micro-plates. The nonlinear ...
We present a comprehensive analytical model of squeeze-film damping in perforated 3-D microelectrome...
Oscillating microplates attached to microbeams is the main part of many microresonators and micro-el...
Many MEMS devices employ parallel plates for capacitive sensing and actuation. The desire to get a s...
Abstract—We present a comprehensive analytical model of squeeze-film damping in perforated 3-D micro...