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Slender piezoelectric beams with resistive-inductive electrodes - modeling and axial wave propagation

机译:带电阻感应电极的细长压电梁-建模和轴向波传播

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摘要

This contribution presents an extended one-dimensional theory for piezoelectric beam-type structures with non-ideal electrodes. For these types of electrodes the equipotential area condition is not satisfied. The main motivation of our research is originated from passive vibration control: when an elastic structure is covered by several piezoelectric patches that are linked via resistances and inductances, vibrational energy is efficiently dissipated if the electric network is properly designed. Assuming infinitely small piezoelectric patches that are connected by an infinite number of electrical, in particular resistive and inductive elements, one obtains the Telegrapher's equation for the voltage across the piezoelectric transducer. Embedding this outcome into the framework of Bernoulli-Euler, the final equations are coupled to the wave equations for the longitudinal motion of a bar and to the partial differential equations for the lateral motion of the beam. We present results for the wave propagation of a longitudinal bar for several types of electrode properties. The frequency spectra are computed (phase angle, wave number, wave speed), which point out the effect of resistive and inductive electrodes on wave characteristics. Our results show that electrical damping due to the resistivity of the electrodes is different from internal (=strain velocity dependent) or external (=velocity dependent) mechanical damping. Finally, results are presented, when the structure is excited by a harmonic single force, yielding that resistive-inductive electrodes are suitable candidates for passive vibration control that might be of great interest for practical applications in the future.
机译:这一贡献为具有非理想电极的压电梁型结构提供了扩展的一维理论。对于这些类型的电极,不满足等电位面积条件。我们研究的主要动力来自于被动振动控制:当弹性结构被数个通过电阻和电感连接的压电片覆盖时,如果电气网络设计合理,振动能量将被有效地耗散。假设通过无数个电气元件(特别是电阻性和电感性元件)连接的无数个压电小片,就可以得出压电换能器两端电压的Telegrapher方程。将这一结果嵌入到Bernoulli-Euler的框架中,最终方程耦合到杆的纵向运动的波动方程和梁的横向运动的偏微分方程。我们提出了几种类型的电极特性的纵向棒的波传播结果。计算频谱(相角,波数,波速),指出电阻电极和电感电极对波特性的影响。我们的结果表明,由于电极电阻率引起的电阻尼不同于内部(取决于应变速度)或外部(取决于速度)机械阻尼。最后,给出了当结构被谐波单力激发时的结果,表明电阻感应电极是被动振动控制的合适候选者,这可能在将来的实际应用中引起人们的极大兴趣。

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