The evaluation of loss mechanisms in microscale mechanical resonators is addressed. Among various dissipation causes, thermoelastic loss is considered as a fundamental dissipation mechanism in microbeam resonators packed in a near-vacuum environment. However, the standard thermoelastic analysis is unable to interpret the size effect experimentally evidenced in resonators when the dimensions become very small, below several microns. In this paper we propose an enhanced nonlocal thermoelastic model, based on a thermodynamical formulation, which incorporates internal characteristic material lengths. Analytical results obtained with this nonlocal theory are compared with experimental results reported in the literature. It is shown how nonloca...
Abstract This paper focuses on the problem of the numerical evaluation of dissipation induced by the...
This dissertation investigates dissipation in microelectromechanical (MEMS) resonators via detailed ...
Although the thermoelastic damping is a direct consequence of thermodynamic relations, its influence...
The evaluation of loss mechanisms in microscale mechanical resonators is addressed. Among various di...
The numerical evaluation of intrinsic dissipation induced by thermoelastic coupling is of paramount...
Thermoelastic damping is recognized as a significant loss mechanism at room temperature in micro-sca...
This paper focuses on the problem of the numerical evaluation of dissipation induced by thermoelast...
AbstractThermoelastic damping is recognized as a significant loss mechanism at room temperature in m...
In this article, the recent and original results on the effect of thermoelastic damping (TED) on the...
The importance of thermoelastic damping as a fundamental dissipation mechanism for small-scale mecha...
Mechanical resonators, with dimensions ranging from hundreds of nanometers to hundreds of micrometer...
The dynamic properties and behaviors of microplate resonators have been experimentally shown to be s...
The effect of thermoelastic dissipation as an energy loss mechanism in micromechanical resonators is...
The operation of micro-=nanobeams vibrating at very high frequencies, such as encountered in micro-=...
Thermoelastic dissipation (TED) is analyzed for complex geometries of micromechanical resonators, de...
Abstract This paper focuses on the problem of the numerical evaluation of dissipation induced by the...
This dissertation investigates dissipation in microelectromechanical (MEMS) resonators via detailed ...
Although the thermoelastic damping is a direct consequence of thermodynamic relations, its influence...
The evaluation of loss mechanisms in microscale mechanical resonators is addressed. Among various di...
The numerical evaluation of intrinsic dissipation induced by thermoelastic coupling is of paramount...
Thermoelastic damping is recognized as a significant loss mechanism at room temperature in micro-sca...
This paper focuses on the problem of the numerical evaluation of dissipation induced by thermoelast...
AbstractThermoelastic damping is recognized as a significant loss mechanism at room temperature in m...
In this article, the recent and original results on the effect of thermoelastic damping (TED) on the...
The importance of thermoelastic damping as a fundamental dissipation mechanism for small-scale mecha...
Mechanical resonators, with dimensions ranging from hundreds of nanometers to hundreds of micrometer...
The dynamic properties and behaviors of microplate resonators have been experimentally shown to be s...
The effect of thermoelastic dissipation as an energy loss mechanism in micromechanical resonators is...
The operation of micro-=nanobeams vibrating at very high frequencies, such as encountered in micro-=...
Thermoelastic dissipation (TED) is analyzed for complex geometries of micromechanical resonators, de...
Abstract This paper focuses on the problem of the numerical evaluation of dissipation induced by the...
This dissertation investigates dissipation in microelectromechanical (MEMS) resonators via detailed ...
Although the thermoelastic damping is a direct consequence of thermodynamic relations, its influence...