This paper presents an investigation into the nonlinear effect of squeeze-film damping on the response of a clamped–clamped microbeam to mechanical shock. In this work, we solve simultaneously the nonlinear Reynolds equation, to model squeeze-film damping, coupled with a nonlinear Euler–Bernoulli beam equation. A Galerkin-based reduced-order model and a finite-difference method are utilized for the solid domain and fluid domain, respectively. Several results demonstrating the effect of gas pressure on the response of the microbeams are shown. Comparison with the results of a fully coupled multiphysics nonlinear finite-element model is presented. The results indicate that, for devices operating in air, squeeze-film damping can be used effect...
Structural vibration studies of various MEMS structures have revealed that whenever a suspended flat...
Oscillating microplates attached to microbeams is the main part of many microresonators and micro-el...
Evaluation of squeezed film air damping is critical in the design and control of dynamic MEMS device...
The static and dynamic behavior of a MEMS subjected to thermoelastic and squeeze-film effects is inv...
An improved theoretical approach is proposed to predict the dynamic behavior of long, slender and fl...
A fixed–fixed curved micro-beam resonator under the influence of harmonic electrostatic field is con...
Oscillating microplates attached to microbeams is the main part of many microresonators. There are s...
International audienceCorrect modelling of damping is essentiel to capture the dynamic behaviour of ...
Squeeze film damping effects naturally occur if structures are subjected to loading situations such ...
Correct modelling of damping is essential to capture the dynamic behaviour of a MEMS device. Our int...
This work deals with the evaluation of the squeeze-film damping in an electrically-actuated microbea...
An improved theoretical approach is proposed to predict the dynamic behavior of long, slender and fl...
We consider squeeze film gas damping during microbeam motion away and toward a substrate as occurs d...
This document proposes a formulation of the squeeze film air damping in micro-plates. The nonlinear ...
International audienceIn this article, an original approach to model the squeeze film effects in cap...
Structural vibration studies of various MEMS structures have revealed that whenever a suspended flat...
Oscillating microplates attached to microbeams is the main part of many microresonators and micro-el...
Evaluation of squeezed film air damping is critical in the design and control of dynamic MEMS device...
The static and dynamic behavior of a MEMS subjected to thermoelastic and squeeze-film effects is inv...
An improved theoretical approach is proposed to predict the dynamic behavior of long, slender and fl...
A fixed–fixed curved micro-beam resonator under the influence of harmonic electrostatic field is con...
Oscillating microplates attached to microbeams is the main part of many microresonators. There are s...
International audienceCorrect modelling of damping is essentiel to capture the dynamic behaviour of ...
Squeeze film damping effects naturally occur if structures are subjected to loading situations such ...
Correct modelling of damping is essential to capture the dynamic behaviour of a MEMS device. Our int...
This work deals with the evaluation of the squeeze-film damping in an electrically-actuated microbea...
An improved theoretical approach is proposed to predict the dynamic behavior of long, slender and fl...
We consider squeeze film gas damping during microbeam motion away and toward a substrate as occurs d...
This document proposes a formulation of the squeeze film air damping in micro-plates. The nonlinear ...
International audienceIn this article, an original approach to model the squeeze film effects in cap...
Structural vibration studies of various MEMS structures have revealed that whenever a suspended flat...
Oscillating microplates attached to microbeams is the main part of many microresonators and micro-el...
Evaluation of squeezed film air damping is critical in the design and control of dynamic MEMS device...