Multi-layer piezoelectric actuators (PEAs) are commonly to produce extremely small displacements. Dynamic modeling of PEAs, which can be used to analyze or predict their frequency/time-domain behaviors, plays important roles in the design and control of PEA-based mechanisms. This paper provides a rationale that the complex electrical-mechanical coupled behaviors of PEA can be modelled as an equivalent simple solid with two equivalent excitation forces (proportional to the excitation voltage of PEA) that are equal and opposite, acting at two ends of PEA. Such a rationale is demonstrated through the mathematical derivation process, based on the IEEE standard constitutive relations of piezoelectricity. From the derivation process, the underlyi...
Piezoelectric actuators (PEAs) utilize the inverse piezoelectric effect to generate fine displacemen...
In order to accurately model the hysteresis and dynamic characteristics of piezoelectric stack actua...
Piezoelectric actuator (PEA) is an ideal microscale and nanoscale actuator because of its ultra-prec...
A multilayer piezoelectric actuator is a promising linear vibrator. In this article, a simple distri...
In order to increase the performance of piezoelectric actuators/sensors, a common practice is to sta...
Current models of non-linear electromechanical behaviours of piezoactuators are mostly intended for ...
Actuators based on smart materials such as piezoelectric actuators (PEAs) are widely used in many ap...
Actuators based on smart materials such as piezoelectric actuators (PEAs) are widely used in many ap...
ABSTRACT: A method for characterizing smart materials actuators in full-stroke static and low freque...
Analytical techniques for modelling piezoelectric-driven systems are well-known. Nonetheless, analyt...
Actuators based on smart materials such as piezoelectric actuators (PEAs) are widely used in many ap...
The piezoelectric actuator is a voltage spring system that behaves in a similar characteristic to me...
Abstract — The hub of this paper to study the effect resonance frequency of piezoelectric MEMS. The ...
The objective of this research is to improve physics-based models of piezoelectric actuators through...
Piezoelectric actuators (PEAs) have been broadly utilized as a part of small scale and nanopositioni...
Piezoelectric actuators (PEAs) utilize the inverse piezoelectric effect to generate fine displacemen...
In order to accurately model the hysteresis and dynamic characteristics of piezoelectric stack actua...
Piezoelectric actuator (PEA) is an ideal microscale and nanoscale actuator because of its ultra-prec...
A multilayer piezoelectric actuator is a promising linear vibrator. In this article, a simple distri...
In order to increase the performance of piezoelectric actuators/sensors, a common practice is to sta...
Current models of non-linear electromechanical behaviours of piezoactuators are mostly intended for ...
Actuators based on smart materials such as piezoelectric actuators (PEAs) are widely used in many ap...
Actuators based on smart materials such as piezoelectric actuators (PEAs) are widely used in many ap...
ABSTRACT: A method for characterizing smart materials actuators in full-stroke static and low freque...
Analytical techniques for modelling piezoelectric-driven systems are well-known. Nonetheless, analyt...
Actuators based on smart materials such as piezoelectric actuators (PEAs) are widely used in many ap...
The piezoelectric actuator is a voltage spring system that behaves in a similar characteristic to me...
Abstract — The hub of this paper to study the effect resonance frequency of piezoelectric MEMS. The ...
The objective of this research is to improve physics-based models of piezoelectric actuators through...
Piezoelectric actuators (PEAs) have been broadly utilized as a part of small scale and nanopositioni...
Piezoelectric actuators (PEAs) utilize the inverse piezoelectric effect to generate fine displacemen...
In order to accurately model the hysteresis and dynamic characteristics of piezoelectric stack actua...
Piezoelectric actuator (PEA) is an ideal microscale and nanoscale actuator because of its ultra-prec...