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Damping of bending waves in truss beams by electric transmission lines with PZT actuators

机译:带有PZT执行器的电力传输线可抑制桁架梁中的弯曲波

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摘要

A new device to damp mechanical waves in modular truss beams has been proposed in [1]. It is based on the electro-mechanical coupling of the truss beam with an electrical transmission line by a line distribution of PZT actuators. It has been proved in [1] that extensional and torsional waves can be damped using a standard second-order transmission line, and that such a line is not suitable to damp bending waves. In the present paper, we propose to couple the beam with a fourth-order transmission line, obtained from the standard one by adding a voltage-driven current generator, thus electrically paralleling the structure of the bending wave equation. As a detailed description of the system would require huge numerical programming, to test qualitatively the efficiency of the proposed electro-mechanical coupling we consider a coarse continuum model of PiezoElectro-Mechanical (PEM) beams, using an identification procedure based on the principle of virtual power [4]. We define the critical value for line impedance maximizing the electro-mechanical energy exchange for every wave frequency, thus proving that the electric damping of bending waves by distributed PZT control is technically feasible.
机译:在[1]中提出了一种阻尼模块化桁架梁中机械波的新装置。它基于桁架梁通过PZT执行器的线路分布与输电线路的机电耦合。在[1]中已经证明,可以使用标准的二阶传输线来衰减拉伸波和扭转波,并且这种线不适合阻尼弯曲波。在本文中,我们建议将光束与通过添加电压驱动电流发生器从标准通道获得的四阶传输线耦合,从而使弯曲波方程的结构电平行。由于对该系统的详细描述将需要进行大量的数值编程,为了定性地测试所提出的机电耦合的效率,我们使用基于虚拟原理的识别程序,考虑了压电(PEM)梁的粗连续模型。功率[4]。我们定义了线阻抗的临界值,以最大化每个波频率的机电能量交换,从而证明通过分布式PZT控制对弯曲波进行电阻尼在技术上是可行的。

著录项

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    F. DELL'ISOLA; S. VIDOLI;

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  • 年度 1998
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