학술논문

Enhancement of Magnetostriction in Internally-Biased Terfenol-D 2-2 Composites
Document Type
Periodical
Source
IEEE Transactions on Magnetics IEEE Trans. Magn. Magnetics, IEEE Transactions on. 44(11):3028-3031 Nov, 2008
Subject
Fields, Waves and Electromagnetics
Magnetostriction
Magnetic materials
Neodymium
Magnetic field induced strain
Fabrication
Composite materials
Magnetic fields
Magnetic properties
Finite element methods
Magnetic analysis
Composites
finite element method
magnetostriction
multilayers
Terfenol-D
Language
ISSN
0018-9464
1941-0069
Abstract
A key issue in the fabrication of Terfenol-D 2-2 composites with internal magnetic field biasing is the selection of appropriate constituent materials to obtain high magnetostriction while keeping optimum magnetomechanical properties. The fabrication process is costly and time consuming and, therefore, numerical methods to predict their properties are useful. In this paper, finite element analysis (FEA) of the magnetostriction of such composites has been carried out using the commercial package ABAQUS. It has been shown that composites fabricated using Nd$_{2}$ Fe$_{14}$ B for the permanent magnetic material layers possess the highest internal fields within the Terfenol-D layers, although the overall strain of these composites is limited to approximately $800\times 10^{- 6}$ due to the high elastic modulus of Nd$_{2}$ Fe$_{14}$ B. Simulations showed that the strain can be enhanced by choosing a different material with a lower elastic modulus for the permanent magnetic layer even though the internal field is lower. The simulations showed that the strain can increase by 12% if the Nd$_{2}$Fe$_{14}$B layer is substituted by SmCo$_{5}$; by 23% if it is substituted by Sm$_{2}$ Co$_{17}$ ; and by 35% if it is substituted by Alnico.