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One-dimensional phononic crystals that incorporate a defective piezoelectric/piezomagnetic as a new sensor

机译:一维声晶晶体,其包含缺陷的压电/压电磁性作为新传感器

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摘要

In this paper, we have studied the propagation and localization of acoustic waves in a onedimensional (1D) phononic crystal at the effects of both electric and magnetic fields. We focused on the sensing and measuring the electric and magnetic fields by adjusting the position of the transmitted peak (defect mode) inside the two piezoelectric/piezomagnetic defect layers (0.7 PMN-0.3PT/Terfenol-D). The defect mode is shifted towards the lower frequencies by applying electric and magnetic fields and towards the higher frequencies by opposing the field's direction. The bigger the value of the applied field is the greater movement in the peak position is. In addition, our results revealed that the magnetic field has a bigger influence than the electric field on the position of the defect mode. Moreover, we studied such movement of the defect mode position by applying the electric and magnetic field simultaneously. These results can be used to improve and enhance piezoelectric and piezomagnetic energy harvesters.
机译:在本文中,我们研究了在电磁场和磁场的效果下在一纤维(1D)声子晶体中声波的传播和定位。我们通过调节两个压电/压电磁缺陷层内部的透射峰(缺陷模式)的位置(0.7mn-0.3pt / terfenol-d)来专注于感测和测量电磁场。通过相反地的方向,通过施加电和磁场和朝向较高频率来朝向较低频率移动缺陷模式。所施加的字段的值越大,峰值位置的移动越大。另外,我们的结果表明,磁场的影响比缺陷模式的位置的电场更大。此外,我们通过同时施加电和磁场来研究缺陷模式位置的这种运动。这些结果可用于改善和增强压电和压电磁能收割机。

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