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首页> 外文期刊>Advances in condensed matter physics >Modeling of Small DC Magnetic Field Response in Trilayer Magnetoelectric Laminate Composites
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Modeling of Small DC Magnetic Field Response in Trilayer Magnetoelectric Laminate Composites

机译:三层磁电层合板中小直流磁场响应的建模

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We consider a magnetoelectric laminate which comprises two magnetostrictive (Ni) layers and an in-between piezoelectric layer (PZT). Using the finite-element method-based software COMSOL, we numerically calculate the induced voltage between the two faces of the PZT piezoelectric layer, by an external homogeneous small-signal magnetic field threading the three-layer Ni/PZT/Ni laminate structure. A bias magnetic field is simulated as being produced by two permanent magnets, as it is done in real experimental setups. For approaching the real materials’ properties, a measured magnetization curve of the Ni plate is used in the computations. The reported results take into account the finite-size effects of the structure, such as the fringing electric field effect and the demagnetization, as well as the effect of the finite conductivity of the Ni layers on the output voltage. The results of the simulations are compared with the experimental data and with a widely known analytical result for the induced magnetoelectric voltage.
机译:我们考虑一种包括两个磁致伸缩(Ni)层和一个中间压电层(PZT)的磁电层压板。使用基于有限元方法的软件COMSOL,我们通过外部均匀的小信号磁场穿过三层Ni / PZT / Ni叠层结构,数值计算PZT压电层两个面之间的感应电压。如同在实际实验装置中所做的那样,偏置磁场被模拟为由两个永磁体产生。为了逼近真实材料的性能,在计算中使用了测得的镍板磁化曲线。报告的结果考虑了结构的有限尺寸效应,例如边缘电场效应和退磁,以及镍层的有限电导率对输出电压的影响。将模拟结果与实验数据以及感应磁电压的众所周知的分析结果进行比较。

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