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SH wave propagation in piezoelectric coupled plates

机译:SH波在压电耦合板中的传播

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摘要

The propagation of shear horizontal (SH) wave in a piezoelectric coupled plate is investigated in this paper. Full account is taken of the piezoelectric coupling effect to the isotropic metal core in the mathematical model. One of the applications of this research is in the damage detection of the host metal structure from the wave propagation signal excited by the piezoelectric layer which is surface bonded on the surface of a metal core. This research is distinct from the previous works on SH propagation in piezoelectric structures because the piezoelectric materials were used as the core structure in the previous studies, and the potential of the studies was mainly on time-delay devices. The dispersive characteristics and the mode shapes of the transverse displacement and the electric potential of the piezoelectric layer are theoretically derived. The results from numerical simulations show that the phase velocity of the plate structure tends to the bulk shear wave velocity of the host metal core at high wave number when the shear wave velocity of host plate is larger than that of PZT bonded on it. Furthermore, there are three asymptotic solutions of wave propagation when the shear wave velocity of the host plate is smaller than that of PZT. The mode shape of the electric potential of the piezoelectric layer changes from the quadratic shape at lower wave number and with thinner piezoelectric layer to the shape with more zero nodes at higher wave number and with thicker piezoelectric layer. These findings are significant in the application of wave propagation in piezoelectric coupled structures.
机译:本文研究了水平剪切(SH)波在压电耦合板中的传播。在数学模型中充分考虑了对各向同性金属芯的压电耦合效应。这项研究的应用之一是从表面粘结在金属芯表面上的压电层所激发的波传播信号中检测主体金属结构的损伤。这项研究与先前关于压电结构中SH传播的工作不同,因为在先前的研究中压电材料被用作核心结构,并且研究的潜力主要在延时装置上。理论上推导了横向位移和压电层的电势的色散特性和模态形状。数值模拟结果表明,当基体的剪切波速大于键合在其上的PZT时,板结构的相速度在高波数时趋于基体金属芯的整体剪切波速。此外,当母板的剪切波速度小于PZT的剪切波速度时,存在三种传播的渐近解。压电层的电位的模式形状从低波数且具有较薄压电层的方形形状变为具有高波数且具有更多零节点且具有较厚压电层的形状。这些发现对于波传播在压电耦合结构中的应用是重要的。

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