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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >New design methodology for piezoelectric shunt structures using admittance analysis
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New design methodology for piezoelectric shunt structures using admittance analysis

机译:基于导纳分析的压电并联结构设计新方法

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摘要

In this paper, a new design method for a piezoelectric shunt circuit to reduce unwanted vibration of flexible structures is proposed. Admittance is introduced to represent electromechanical characteristics of piezoelectric structures and to predict the performance of piezoelectric shunt system. It is shown that admittance of the piezoelectric structure is proportional to the dissipated energy in the shunt circuit. Admittance is used as a design index to construct the piezoelectric shunt system and obtained by finite-element method. The location, area, shape, and material property of piezoelectric patches are determined by admittance analysis. Vibration reduction of the piezoelectric structure with shunt circuit is realized by experiments. It is proved from damped system response of the piezoelectric structure in frequency and time domains that the admittance is proportional to the performance of the piezoelectric shunt system. A flow chart for design procedures using admittance analysis is presented to save design cost of the piezoelectric shunt system.
机译:本文提出了一种新的压电并联电路设计方法,以减少柔性结构的有害振动。引入导纳来表示压电结构的机电特性并预测压电分流系统的性能。可以看出,压电结构的导纳与并联电路中的耗散能量成正比。导纳作为构造压电并联系统的设计指标,并通过有限元法获得。压电贴片的位置,面积,形状和材料特性通过导纳分析确定。通过实验实现了采用并联电路的压电结构减振。从压电结构在频域和时域的阻尼系统响应可以证明,导纳与压电分流系统的性能成正比。提出了使用导纳分析的设计程序流程图,以节省压电并联系统的设计成本。

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