首页> 外文会议>Conference on Active Materials: Behavior and Mechanics Mar 3-6, 2003 San Diego, California, USA >Effective Properties of Three-Phase Electro-Magneto-Elastic Multifunctional Composite Materials
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Effective Properties of Three-Phase Electro-Magneto-Elastic Multifunctional Composite Materials

机译:三相电磁-弹性多功能复合材料的有效性能

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摘要

Coupling between the electric field, magnetic field, and strain of composite materials is achieved when electro-elastic (piezoelectric) and magneto-elastic (piezomagnetic) particles are joined by an elastic matrix. Although the matrix is neither piezoelectric nor piezomagnetic, the strain field in the matrix couples the E field of the piezoelectric phase to the B field of the piezomagnetic phase. This three-phase electro-magneto-elastic composite should have greater ductility and formability than a two-phase composite in which E and B are coupled by directly bonding two ceramic materials with no compliant matrix. A finite element analysis and homogenization of a representative volume element is used to determine the effective electric, magnetic, mechanical, and coupled-field properties of an elastic (epoxy) matrix reinforced with piezoelectric and piezomagnetic fibers. The effective magnetoelectric moduli of this three-phase composite are, however, less than the effective magnetoelectric coefficients of a two-phase piezoelectric/piezomagnetic composite, because the epoxy matrix is not stiff enough to transfer significant strains between the piezomagnetic and piezoelectric fibers.
机译:当电弹性(压电)和磁弹性(压电)粒子通过弹性矩阵连接时,复合材料的电场,磁场和应变之间便达到了耦合。尽管矩阵既不是压电的也不是压电的,但是矩阵中的应变场将压电相的E场耦合到压电相的B场。这种三相电磁磁复合材料应比两相复合材料具有更大的延展性和可成形性,在该两相复合材料中,E和B是通过直接粘合两种不具有顺应性基质的陶瓷材料而结合在一起的。有限元分析和代表性体积元素的均质化用于确定由压电和压电纤维增强的弹性(环氧树脂)基质的有效电,磁,机械和耦合场特性。但是,这种三相复合材料的有效磁电模量小于两相压电/压电复合材料的有效磁电系数,因为环氧基质的刚度不足以在压电和压电纤维之间传递明显的应变。

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