Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Modeling and Characterization of Piezoelectric and Magnetostrictive Induced Strain Actuators

View through CrossRef
Abstract This paper presents the results of theoretical modeling and experimental characterization of PiezoSystems Jena P-177-00 large stroke piezoelectric actuator and of Etrema AA-140J025-ES1 large stroke/large power magnetostrictive actuator. An improved smart-material actuators measurement method suited for static and low frequency actuation was devised. Analytical and finite element modeling (ANSYS) of the experimental setup to determine stiffness component characteristics was performed. The output displacements of the active material actuators were recorded in quasi-static and dynamic regimes, under varied pre-stress level, voltage and frequency values. The measurements indicated a strong dependence of the actuator stiffness and piezoelectric properties on the electromechanical loading conditions. The study also identified and calculated the parameters of the induced strain actuators electro-mechanical model. These parameters are necessary for performing design optimization to achieve maximum energy transfer and minimum power requirements. Experimentally verified data characterizing piezoelectric and magnetostrictive actuators in the full stroke/full power regime is provided.
Title: Modeling and Characterization of Piezoelectric and Magnetostrictive Induced Strain Actuators
Description:
Abstract This paper presents the results of theoretical modeling and experimental characterization of PiezoSystems Jena P-177-00 large stroke piezoelectric actuator and of Etrema AA-140J025-ES1 large stroke/large power magnetostrictive actuator.
An improved smart-material actuators measurement method suited for static and low frequency actuation was devised.
Analytical and finite element modeling (ANSYS) of the experimental setup to determine stiffness component characteristics was performed.
The output displacements of the active material actuators were recorded in quasi-static and dynamic regimes, under varied pre-stress level, voltage and frequency values.
The measurements indicated a strong dependence of the actuator stiffness and piezoelectric properties on the electromechanical loading conditions.
The study also identified and calculated the parameters of the induced strain actuators electro-mechanical model.
These parameters are necessary for performing design optimization to achieve maximum energy transfer and minimum power requirements.
Experimentally verified data characterizing piezoelectric and magnetostrictive actuators in the full stroke/full power regime is provided.

Related Results

Review of high temperature piezoelectric materials, devices, and applications
Review of high temperature piezoelectric materials, devices, and applications
Piezoelectric functional materials have been extensively studied and employed in numerous devices. With the rapid development of modern industries, such as power plants, aerospace,...
Piezoelectric Actuators – Recent Innovations 2024 –
Piezoelectric Actuators – Recent Innovations 2024 –
This article reviews recent innovations in piezoelectric actuators, then indicates the future research targets. In the materials, the piezoelectric performances of relaxor-lead tit...
A Constitutive Model for Piezoelectric Paint with Mixed Connectivity
A Constitutive Model for Piezoelectric Paint with Mixed Connectivity
This article presents a constitutive model for piezoelectric paint that addresses its special characteristics such as mixed connectivity and air void content. Piezoelectric paint i...
The Effect of Piezoelectric Shape on Energy Harvesting Shoes
The Effect of Piezoelectric Shape on Energy Harvesting Shoes
Piezoelectric elements are commonly installed in shoe sole to make use of the piezoelectric effect due to the vibration generated by the human motion. Piezoelectric shoe is a great...
Magnetostrictive Materials
Magnetostrictive Materials
AbstractMagnetostrictive materials are a class of smart materials that can convert energy between the magnetic and elastic states. For this reason, magnetostrictive materials and d...
Review of Modeling and Control of Magnetostrictive Actuators
Review of Modeling and Control of Magnetostrictive Actuators
Magnetostrictive actuators play an important role in the perception of usefulness of smart materials and devices. Their applications are potentially wider than that of piezoelectri...
Nonlinear optimal control for robotic exoskeletons with electropneumatic actuators
Nonlinear optimal control for robotic exoskeletons with electropneumatic actuators
Purpose To provide high torques needed to move a robot’s links, electric actuators are followed by a transmission system with a high transmission rate. For instance, gear ratios of...
PIEZOELECTRICITY
PIEZOELECTRICITY
AbstractCertain materials produce electrical charges on their surfaces as a consequence of applied mechanical stress. The induced charges are proportional to the mechanical stress....

Back to Top