應力對磁性薄膜之影響

碩士 === 國立臺灣大學 === 應用力學研究所 === 90 === Ferromagnetic materials have been widely used in recording devices, actuators, and sensors owing to inherent hysteresis and magnetostriction. As a result, the investigation of interaction between hysteresis and stress induced by magnetostriction has be...

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Main Authors: Ming-Pei Lin, 林明沛
Other Authors: Yi-Chung Shu
Format: Others
Language:zh-TW
Published: 2002
Online Access:http://ndltd.ncl.edu.tw/handle/83055752654114569547
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spelling ndltd-TW-090NTU004990242015-10-13T14:41:11Z http://ndltd.ncl.edu.tw/handle/83055752654114569547 應力對磁性薄膜之影響 Ming-Pei Lin 林明沛 碩士 國立臺灣大學 應用力學研究所 90 Ferromagnetic materials have been widely used in recording devices, actuators, and sensors owing to inherent hysteresis and magnetostriction. As a result, the investigation of interaction between hysteresis and stress induced by magnetostriction has been studied extensively in current literature. This article has developed a framework based on micromagnetics, together with the famous Landau-Lifshitz-Gilbert equation and boundary element method, to study the effect of the internal stress induced by magnetostriction and external magnetic field and mechanical loading on the magnetic domain rearrangement. Our method is different form the traditional one proposed in literatures, which simply replaces the total strain by spontaneous strain. As a result, it is questionable that the strain compatibility condition can be satisfied by this approximation. Further, the effect of internal stress due to incompatible strain on the rearrangement of magnetic domains is not taken into account. On the other hand, we have proposed a modified boundary element method which conforms to the compatibility condition and is able to compute the internal stress and the corresponding effective magnetic field accurately. Our results have shown that for ferromagnetic crystals with sopnstaneous strain around 10-5 order of magnitude, the difference between the traditional approximate method and ours is small. In addition, the influence of the internal stress on magnetic domains is also not significant. However, we have demonstrated that for ferromagnetic crystals with spontaneous strain around 10-3 order of magnitude such as Terfenol-D, the traditional approximate method to study the effect of stress on magnetic domains is questionable, and the effective magnetic field due to internal stress cannot be ignored. Key words: micromagnetics, BEM, hysteresis, magneostriction Yi-Chung Shu 舒貽忠 2002 學位論文 ; thesis 91 zh-TW
collection NDLTD
language zh-TW
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sources NDLTD
description 碩士 === 國立臺灣大學 === 應用力學研究所 === 90 === Ferromagnetic materials have been widely used in recording devices, actuators, and sensors owing to inherent hysteresis and magnetostriction. As a result, the investigation of interaction between hysteresis and stress induced by magnetostriction has been studied extensively in current literature. This article has developed a framework based on micromagnetics, together with the famous Landau-Lifshitz-Gilbert equation and boundary element method, to study the effect of the internal stress induced by magnetostriction and external magnetic field and mechanical loading on the magnetic domain rearrangement. Our method is different form the traditional one proposed in literatures, which simply replaces the total strain by spontaneous strain. As a result, it is questionable that the strain compatibility condition can be satisfied by this approximation. Further, the effect of internal stress due to incompatible strain on the rearrangement of magnetic domains is not taken into account. On the other hand, we have proposed a modified boundary element method which conforms to the compatibility condition and is able to compute the internal stress and the corresponding effective magnetic field accurately. Our results have shown that for ferromagnetic crystals with sopnstaneous strain around 10-5 order of magnitude, the difference between the traditional approximate method and ours is small. In addition, the influence of the internal stress on magnetic domains is also not significant. However, we have demonstrated that for ferromagnetic crystals with spontaneous strain around 10-3 order of magnitude such as Terfenol-D, the traditional approximate method to study the effect of stress on magnetic domains is questionable, and the effective magnetic field due to internal stress cannot be ignored. Key words: micromagnetics, BEM, hysteresis, magneostriction
author2 Yi-Chung Shu
author_facet Yi-Chung Shu
Ming-Pei Lin
林明沛
author Ming-Pei Lin
林明沛
spellingShingle Ming-Pei Lin
林明沛
應力對磁性薄膜之影響
author_sort Ming-Pei Lin
title 應力對磁性薄膜之影響
title_short 應力對磁性薄膜之影響
title_full 應力對磁性薄膜之影響
title_fullStr 應力對磁性薄膜之影響
title_full_unstemmed 應力對磁性薄膜之影響
title_sort 應力對磁性薄膜之影響
publishDate 2002
url http://ndltd.ncl.edu.tw/handle/83055752654114569547
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