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Thickness vibrations of a piezoelectric plate with dissipation

机译:带耗散的压电板的厚度振动

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摘要

The three-dimensional (3-D) equations of linear piezoelectricity with quasi-electrostatic approximation are extended to include losses attributed to the acoustic viscosity and electrical conductivity. These equations are used to investigate effects of dissipation on the propagation of plane waves in an infinite solid and forced thickness vibrations in an infinite piezoelectric plate with general symmetry. For a harmonic plane wave propagating in an arbitrary direction in an unbounded solid, the complex eigenvalue problem is solved from which the effective elastic stiffness, viscosity, and conductivity are computed. For the forced thickness vibrations of an infinite plate, the complex coupling factor K*, input admittance Y are derived and an explicit, approximate expression for K* is obtained in terms of material properties. Effects of the viscosity and conductivity on the resonance frequency, modes, admittance, attenuation coefficient, dynamic time constant, coupling factor, and quality factor are calculated and examined for quartz and ceramic barium titanate plates.
机译:具有准静电近似的线性压电的三维(3-D)方程被扩展为包括归因于声粘度和电导率的损耗。这些方程式用于研究耗散对平面波在无限固体中的传播以及在具有对称性的无限压电板上的强迫厚度振动的影响。对于在无限大的固体中向任意方向传播的谐波平面波,可以解决复特征值问题,从而计算出有效的弹性刚度,粘度和电导率。对于无限板的强迫厚度振动,推导复耦合因子K *,输入导纳Y,并根据材料特性获得K *的明确近似表达式。计算并检查了石英和陶瓷钛酸钡板的粘度和电导率对共振频率,模式,导纳,衰减系数,动态时间常数,耦合因子和品质因子的影响。

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