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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >The Band Gaps of Plate-Mode Waves in One-Dimensional Piezoelectric Composite Plates: Polarizations and Boundary Conditions
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The Band Gaps of Plate-Mode Waves in One-Dimensional Piezoelectric Composite Plates: Polarizations and Boundary Conditions

机译:一维压电复合板中板模波的带隙:极化和边界条件

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摘要

Theoretical studies are presented for the band structures of plate-mode waves in a one-dimensional (1-D) phononic crystal plate consisting of piezoelectric ceramics placed periodically in an epoxy substrate. The dependences of the widths and starting frequencies of first band gaps (FBG) on the filling fraction and the thickness to lattice pitch ratio are calculated for different polarizations of piezoelectric ceramics under different electric boundary conditions, i.e., short circuit (SC) and open circuit (OC). We found that the FBG always is broadened by polarizing piezoelectric ceramics, and the FBG widths with SC always are larger than that with OC for the same polarization. Our research shows that there are three critical parameters which determine the FBG: the polarized directions, the filling fraction, and the ratio of the plate thickness to the lattice pitch, respectively. Therefore, we can control the width and starting frequency of the FBG in the engineering according to need by choosing these parameters of the system.
机译:提出了对一维(1-D)声子晶体板中板模式波的能带结构的理论研究,该晶体由周期性放置在环氧树脂基底中的压电陶瓷组成。在不同的电边界条件下,即短路(SC)和开路的情况下,对于压电陶瓷的不同极化,计算了第一带隙(FBG)的宽度和起始频率与填充率以及厚度与晶格间距比的关系。 (OC)。我们发现,FBG总是通过极化压电陶瓷而变宽,而对于相同的极化,SC的FBG宽度总是大于OC的FBG宽度。我们的研究表明,有三个决定FBG的关键参数:极化方向,填充率和板厚与晶格间距的比值。因此,通过选择系统的这些参数,我们可以根据需要控制工程中FBG的宽度和起始频率。

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