完整後設資料紀錄
DC 欄位語言
dc.contributor.author王勇量en_US
dc.contributor.authorWang, Yong-Liangen_US
dc.contributor.author郭心怡en_US
dc.contributor.authorKuo, Hsin-Yien_US
dc.date.accessioned2014-12-12T01:48:23Z-
dc.date.available2014-12-12T01:48:23Z-
dc.date.issued2010en_US
dc.identifier.urihttp://140.113.39.130/cdrfb3/record/nctu/#GT079816526en_US
dc.identifier.urihttp://hdl.handle.net/11536/47284-
dc.description.abstract本論文探討材料極化方向對壓電壓磁纖維複合材料磁電耦合行為之影響,並求得最佳之磁電耦合效應。由於單相多鐵材料的磁電耦合效應微弱,不足以應用在工程上,因此使用雙相或多相壓電壓磁複合材料形式,藉此得到更佳之磁電耦合效應。且由於材料性質會隨著極化方向而改變,所以亦可藉由不同極化方向的組合得到不同的耦合性質,進而得到最佳磁電耦合行為。本論文使用Mori-Tanaka模式與尤拉角轉換之微觀力學模型求得壓電壓磁纖維複合材料之最佳磁電耦合效應並與COMSOL Multiphysics有限元素軟體分析結果相互驗證。 本篇論文發現,對於BaTiO3為內含物、CoFe2O4為母材之複合材料,經由改變材料的極化方向,其最佳化之 與 可分別提升44倍與5倍;對於CoFe2O4為內含物、BaTiO3為母材之複合材料,經由改變材料的極化方向,其最佳化之 與 可分別提升101倍與5倍。zh_TW
dc.description.abstractMagnetoelectric effects refer to the polarization induced by a magnetic field or the magnetization induced by an electric field. However, magnetoelectric coupling is weak in single phase materials. Composite materials, on the other hand, are an alternative to improve the magnetoelectric coupling. In this work, we optimize the effective magnetoelectric voltage coefficient of fibrous composites made of piezoelectric and piezomagnetic materials. The optimization of magneotelectricity is with respect to the crystallographic orientations and the volume fraction for the two materials. We use Mori-Tanaka micromechanical model, Euler angle transformation, and finite element analysis (COMSOL Multiphysics) to estimate macroscopic properties of the composites. We show that the effective in-plane ( ) and out-of-plane ( ) coupling coefficients can be enhanced many-fold at the optimal orientation compared to those at normal orientation. For example, we show that the constants are 44 and 5 times larger for the optimal orientation of barium titanate fibers in a cobalt ferrite matrix of the optimized volume fraction compared to the normal orientation, while they are 101 and 5 times larger for cobalt ferrite fibers in a barium titanate matrix.en_US
dc.language.isozh_TWen_US
dc.subject磁電效應zh_TW
dc.subject多鐵材料zh_TW
dc.subject壓電zh_TW
dc.subject壓磁zh_TW
dc.subject複合材料zh_TW
dc.subject極化方向zh_TW
dc.subjectMori-Tanaka模式zh_TW
dc.subject有限元素法zh_TW
dc.subject最佳化zh_TW
dc.subjectMagnetoelectric Effecten_US
dc.subjectMultiferroicen_US
dc.subjectPiezoelectricen_US
dc.subjectPiezomagneticen_US
dc.subjectCompositesen_US
dc.subjectCrystallographic Orientationen_US
dc.subjectMori-Tanaka Methoden_US
dc.subjectFinite Element Analysisen_US
dc.subjectOptimizationen_US
dc.title壓電壓磁纖維複合材料磁電耦合效應之最佳化zh_TW
dc.titleOptimization of magnetoelectricity in piezoelectric-piezomagnetic fibrous compositesen_US
dc.typeThesisen_US
dc.contributor.department土木工程學系zh_TW
顯示於類別:畢業論文


文件中的檔案:

  1. 652601.pdf

若為 zip 檔案,請下載檔案解壓縮後,用瀏覽器開啟資料夾中的 index.html 瀏覽全文。