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Acoustic-electroelastic modeling of piezoelectric disks in high-intensity focused ultrasound power transfer systems

机译:高强度聚焦超声波动力传输系统中压电磁盘的声电弹性建模

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Contactless ultrasound power transfer (UPT) has emerged as one of the promising techniques for wireless power transfer. Physical processes supporting UPT include the vibrations at a transmitting/acoustic source element, acoustic wave propagation, piezoelectric transduction of elastic vibrations at a receiving element, and acoustic-structure interactions at the surfaces of the transmitting and receiving elements. A novel mechanism using a high-intensity focused ultrasound (HIFU) transmitter is proposed for enhanced power transfer in UPT systems. The HIFU source is used for actuating a finite-size piezoelectric disk receiver. The underlying physics of the proposed system includes the coupling of the nonlinear acoustic field with structural responses of the receiver, which leads to spatial resonances and the appearance of higher harmonics during wave propagation in a medium. Acoustic nonlinearity due to wave kinematics in the HIFU-UPT system is modeled by taking into account the effects of diffraction, absorption, and nonlinearity in the medium. Experimentally-validated acoustic-structure interaction formulation is employed in a finite element based multiphysics model. The results show that the HIFU high-level excitation can cause disproportionately large responses in the piezoelectric receiver if the frequency components in the nonlinear acoustic field coincide with the resonant frequencies of the receiver.
机译:非接触式超声波动力传输(UPT)已成为无线电力传输的有希望的技术之一。支撑UPT的物理过程包括在接收元件处的发射/声源元件,声波传播,弹性振动的压电转导的振动,以及发射元件的表面处的声学结构相互作用。提出了一种使用高强度聚焦超声(HIFU)发射机的新机构,用于增强UPT系统的功率传输。 HIFU源用于致动有限尺寸的压电盘接收器。所提出的系统的底层物理包括非线性声场与接收器的结构响应的耦合,这导致空间共振和在介质中波传播期间更高谐波的外观。由于介质中衍射,吸收和非线性的效果,模拟了HIFU-UPT系统引起的声学非线性。实验验证的声学结构相互作用配方在基于有限元的多麦体验模型中使用。结果表明,如果非线性声学场中的频率分量与接收器的谐振频率一致的频率分量,则HIFU高级激励可能导致压电接收机中的不成比率大响应。

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