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Multi-mode piezoelectric shunt damping with residual mode correction by evaluation of modal charge and voltage

机译:通过评估模态电荷和电压,对残余模式进行校正的多模压电并联阻尼

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摘要

A resonant, piezoelectric shunt tuning procedure is based on the limiting eigenvalue problems associated with short and open circuiting of the piezoelectric domains attached to a vibrating structure. Whereas short circuit and open circuit frequencies are directly obtained from the eigenvalues, the associated electrical equation further determines a modal charge as an short circuit reaction force and a new modal voltage from the electric deflection in the open circuit limit. By a modal representation with short circuit mode shapes the structural equation fully decomposes, while the inherent contributions from non-resonant vibration modes in the corresponding electrical equation consistently define an effective modal capacitance, conveniently estimated by the modal charge to voltage ratio. The shunt tuning is obtained from the governing characteristic equation for the targeted vibration mode, in which the residual mode correction is explicitly represented by the effective modal capacitance. The tuning procedure with an effective modal capacitance is generalized to multiple piezoelectric domains with independent shunts for simultaneous damping of multiple vibration modes. The accuracy of the proposed shunt tuning methods is demonstrated by a numerical beam example with three piezoceramic patch pairs and independent resistive-inductive shunts. The analysis is carried out in a commercial finite element program, in which the required modal frequencies, charge and voltage are readily available as output to the short circuit and open circuit eigenvalue problems.
机译:谐振压电分流调谐程序基于与附着到振动结构的压电域的短路和开路相关的有限特征值问题。尽管直接从特征值获得短路和开路频率,但相关的电气方程式进一步确定了模态电荷作为短路反作用力,并根据开路极限中的电偏转确定了新的模态电压。通过具有短路模式形状的模态表示,结构方程式得以完全分解,而相应电方程式中非共振振动模式的固有贡献始终如一地定义了有效模态电容,可通过模态电荷与电压之比方便地进行估算。从目标振动模式的控制特性方程式获得分流整定,其中有效模式电容明确表示残余模式校正。具有有效模态电容的调谐过程可推广到具有独立分流器的多个压电域,以同时衰减多个振动模式。带有三个压电陶瓷贴片对和独立的电阻-电感分流器的数值束示例证明了所提出的分流调谐方法的准确性。该分析是在商业有限元程序中进行的,在该程序中,所需的模态频率,电荷和电压可以很容易地用作短路和开路特征值问题的输出。

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