首页> 外文会议>Joint MMM-Intermag Conference >Magnetodielectric effect in trilayered Co_(65)Fe_(35)B_(20)/PVDF/Co_(65)Fe_(35)B_(20) composite materials. Prediction and measurement for tunable microwave applications
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Magnetodielectric effect in trilayered Co_(65)Fe_(35)B_(20)/PVDF/Co_(65)Fe_(35)B_(20) composite materials. Prediction and measurement for tunable microwave applications

机译:三叶式CO_(65)Fe_(35)B_(20)/ PVDF / CO_(65)FE_(35)B_(20)复合材料中的磁铁效应。可调谐微波应用的预测和测量

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The variation in the permeability of a multilayered polyvinylidene fluoride/CoFeB (piezoelectric/ magnetostrictive) composite material under the action of a dc voltage is demonstrated. The driven-voltage permeability is first predicted using a finite element method-based multiphysics calculation. The simulation allows us to determine a magnetic anisotropy field of 45 Oe induced in the ferromagnetic layers by the mechanical coupling between magnetostrictive and piezoelectric layers due to the applied dc voltage. A variation of 30% for the permeability of the ferromagnetic layers is then measured using a radiofrequency permeameter and under the application of a dc voltage of 15 V applied on the ferromagnetic layers, which also act as electrodes for the bias of the polyvinylidene fluoride (PVDF). An additional measurement of the trilayered structure under the application of a dc magnetic field is finally performed to evaluate the magnetic field needed to get a 30% variation in the magnetic layers permeability in order to compare this value to the one predicted by multiphysics calculation. These experimental results are in good agreement with calculations and are very encouraging for the application of the CoFeB/PVDF/CoFeB composite material to ensure the tunability of microwave devices (filters, phase shifters, antennas, etc.)
机译:证实了多层聚偏二氟乙烯/ CoFeB(压电/磁致伸缩)复合材料在DC电压作用下的渗透率的变化。首先使用基于有限元方法的多境计算来预测从动电压渗透率。该模拟允许我们通过施加的直流电压通过磁致伸缩和压电层之间的机械耦合来确定在铁磁层中引起的450E的磁各向异性场。然后使用射频偏振仪测量铁磁性层的渗透率的30%的变化,并且在施加在铁磁层上的15V的DC电压的施加,这也用作聚偏二氟乙烯偏压的电极(PVDF )。最终执行在DC磁场的应用下的三层结构的额外测量以评估获得磁性层渗透率的30%变化所需的磁​​场,以便将该值与多职来计算预测的磁场进行比较。这些实验结果与计算吻合良好,对CofeB / PVDF / CoFeB复合材料的应用非常令人鼓舞,以确保微波器件的可调性(过滤器,相移器,天线等)

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