DocumentCode :
777991
Title :
Design of magnetostrictive/piezoelectric laminate composite for coil-less magnetic force control
Author :
Ueno, Toshiyuki ; Higuchi, Toshiro
Author_Institution :
Dept. of Precision Machinery Eng., The Univ. of Tokyo, Japan
Volume :
41
Issue :
4
fYear :
2005
fDate :
4/1/2005 12:00:00 AM
Firstpage :
1233
Lastpage :
1237
Abstract :
We propose a magnetic force control device consisting of laminate composites of magnetostrictive material and piezoelectric material. The magnetic force control is based on energy conversion in the composite, such that the variation of magnetization of the magnetostrictive material induced by the piezoelectric material is converted to the variation of magnetic force by magnetic circuits. Because of the capacitive property of the piezoelectric material, the device requires little current in order to maintain control of a constant force. The laminate composite can be fabricated easily and in small sizes. In this paper, we report the magnetic force control properties of a composite of Terfenol-D and piezoelectric material plates (PZTs) and discuss the design of the laminate composite. Our theoretical magnetic force formulation derived by an equivalent magnetic analysis and finite-element analysis of strain distribution in the Terfenol-D, and measurements with various thicknesses of PZT demonstrated that there are appropriate thicknesses to provide large variation of the magnetic force and energy conversion efficiency. Stacking the composites was found effective for increasing the effective area of the Terfenol-D.
Keywords :
force control; laminates; magnetic circuits; magnetic forces; magnetoresistive devices; piezoelectric materials; Terfenol-D; coil-less magnetic force control; energy conversion; equivalent magnetic analysis; finite-element analysis; laminate composite; magnetic circuits; magnetic force formulation; magnetostrictive material; piezoelectric material; strain distribution; Composite materials; Energy conversion; Force control; Laminates; Magnetic analysis; Magnetic forces; Magnetic materials; Magnetostriction; Piezoelectric materials; Strain measurement; Laminate composite; magnetic force; magnetostrictive material; piezoelectric material;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2005.844837
Filename :
1420678
Link To Document :
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