王建军, 姚建尧, 李其汉. 分支电路压电阻尼系统的分析模型和基本特性[J]. 工程力学, 2005, 22(6): 217-223.
引用本文: 王建军, 姚建尧, 李其汉. 分支电路压电阻尼系统的分析模型和基本特性[J]. 工程力学, 2005, 22(6): 217-223.
WANG Jian-jun, YAO Jian-yao, LI Qi-han. MODELING AND CHARACTERISTICS FOR PIEZOELECTRIC SHUNT VIBRATION DAMPING[J]. Engineering Mechanics, 2005, 22(6): 217-223.
Citation: WANG Jian-jun, YAO Jian-yao, LI Qi-han. MODELING AND CHARACTERISTICS FOR PIEZOELECTRIC SHUNT VIBRATION DAMPING[J]. Engineering Mechanics, 2005, 22(6): 217-223.

分支电路压电阻尼系统的分析模型和基本特性

MODELING AND CHARACTERISTICS FOR PIEZOELECTRIC SHUNT VIBRATION DAMPING

  • 摘要: 首先利用Hamilton原理推导了分支电路压电阻尼减振系统分析模型的一般表达式.然后,分别研究了具有电阻型、电感型、电阻-电感并联型和电阻-电感串联型分支电路的压电阻尼单自由度系统减振问题的分析模型,进行了相应的幅频特性的数值仿真,讨论了它们的基本特性及电学和机械参数变化对系统响应的影响等问题.最后给出结论以及今后要研究的问题.

     

    Abstract: By the Hamilton's principle, this paper presents a generalized formulation for modeling the system with passive piezoelectric shunt circuit. It is applicable to various structures and shunt circuits. Formulations of single-degree-of-freedom system for four types of piezoelectric shunt circuits, R-shunt –circuit, L-shunt –circuit, RL-series-shunt –circuit and RL-parallel-shunt –circuit, are obtained. The frequency response characteristics of the systems with these four passive piezoelectric shunt circuits are analyzed by numerical methods, and the effect of electrical and mechanical parameters on the system response is also investigated. Several conclusions and some problems to be studied in the future are highlighted.

     

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