In this article, the recent and original results on the effect of thermoelastic damping (TED) on the vibrational properties of micro- and nano-mechanical resonators are reviewed. Thermoelastic damping is recognized as a significant loss mechanism at room temperature in micro-scale resonators. The thermoelastic damping theory was first presented by Zener in 1937, and recently refined by Lifshitz and Roukes. A review of the thermoelastic damping process is presented. Also the theoretical and experimental advances in this field are introduced and discussed. Finally, some results gained by the authors are presented
: In this paper, a nonlinear model of clamped-clamped microbeam actuated by electrostatic load with ...
The effect of coatings and superficial oxide on the behavior of micro resonators deserves attention ...
Although the thermoelastic damping is a direct consequence of thermodynamic relations, its influence...
Thermoelastic damping is recognized as a significant loss mechanism at room temperature in micro-sca...
AbstractThermoelastic damping is recognized as a significant loss mechanism at room temperature in m...
The importance of thermoelastic damping as a fundamental dissipation mechanism for small-scale mecha...
The dynamic properties and behaviors of microplate resonators have been experimentally shown to be s...
Under the condition that microresonators work at room temperature or vaccum, thermoelastic damping i...
The operation of micro-=nanobeams vibrating at very high frequencies, such as encountered in micro-=...
Mechanical resonators, with dimensions ranging from hundreds of nanometers to hundreds of micrometer...
The obtainable quality factor for a nano beam resonator is limited due to internal damping such as t...
Recent interest in thermoelasticity of vibrating structures is motivated by the unavoidable fact tha...
The evaluation of loss mechanisms in microscale mechanical resonators is addressed. Among various di...
In the design of micro-electromechanical systems, which require a high quality factor, the dissipati...
In this paper, a micro resonator is modeled as a thin rectangular microplate with thermoelastic damp...
: In this paper, a nonlinear model of clamped-clamped microbeam actuated by electrostatic load with ...
The effect of coatings and superficial oxide on the behavior of micro resonators deserves attention ...
Although the thermoelastic damping is a direct consequence of thermodynamic relations, its influence...
Thermoelastic damping is recognized as a significant loss mechanism at room temperature in micro-sca...
AbstractThermoelastic damping is recognized as a significant loss mechanism at room temperature in m...
The importance of thermoelastic damping as a fundamental dissipation mechanism for small-scale mecha...
The dynamic properties and behaviors of microplate resonators have been experimentally shown to be s...
Under the condition that microresonators work at room temperature or vaccum, thermoelastic damping i...
The operation of micro-=nanobeams vibrating at very high frequencies, such as encountered in micro-=...
Mechanical resonators, with dimensions ranging from hundreds of nanometers to hundreds of micrometer...
The obtainable quality factor for a nano beam resonator is limited due to internal damping such as t...
Recent interest in thermoelasticity of vibrating structures is motivated by the unavoidable fact tha...
The evaluation of loss mechanisms in microscale mechanical resonators is addressed. Among various di...
In the design of micro-electromechanical systems, which require a high quality factor, the dissipati...
In this paper, a micro resonator is modeled as a thin rectangular microplate with thermoelastic damp...
: In this paper, a nonlinear model of clamped-clamped microbeam actuated by electrostatic load with ...
The effect of coatings and superficial oxide on the behavior of micro resonators deserves attention ...
Although the thermoelastic damping is a direct consequence of thermodynamic relations, its influence...