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Magneto-Electric Effect on Guided Waves in Functionally Graded Piezoelectric–Piezomagnetic Fan-Shaped Cylindrical Structures

机译:在功能梯度压电压电扇形圆柱形结构中的导磁效应

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摘要

Functionally graded piezoelectric⁻piezomagnetic (FGPP) material simultaneously consists of piezomagnetic and piezoelectric phases, which are able to convert energy among mechanical, electric, and magnetic fields. The magneto-electric effect on waves in FGPP fan-shaped cylindrical structures is studied by exploiting the double Legendre orthogonal polynomial method. By means of the Heaviside function, the initial conditions are brought into wave motion equations. Dispersion properties, electric and magnetic potential, and the Poynting vector are calculated. Subsequently, the effect of the graded variation and geometric size on wave characteristics is analyzed. The FGPP fan-shaped cylindrical structures are of complex geometrical shape and material inhomogeneity, so their influences on the magneto-electric effect are the focus of discussion. Results reveal that the cut-off frequencies have a negative relationship with the cross-section area of the structure. The magneto-electric effect could be adjusted via altering the geometric size of the cross-section. These results can be utilized to design and optimize piezoelectric⁻piezomagnetic fan-shaped transducers.
机译:功能渐变的压电⁻斑(FGPP)材料同时由压电磁和压电相组成,能够在机械,电动和磁场之间转换能量。通过利用双杆状正交多项式方法研究了FGPP风扇形圆柱结构中的磁电效电气电气效应。借助于沉重的功能,初始条件进入波运动方程。计算分散性,电和磁电位和储量载体。随后,分析了分级变化和几何尺寸对波特性的影响。 FGPP扇形圆柱形结构具有复杂的几何形状和材料不均匀性,因此它们对磁电效应的影响是讨论的焦点。结果表明,截止频率与结构的横截面区域具有负面关系。可以通过改变横截面的几何尺寸来调节磁效电。这些结果可用于设计和优化压电⁻斑扇形扇形换能器。

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