Department of Mechanical Engineering, National Cheng Kung University, No. 1, University Road, Tainan 701, Taiwan.
Ultrasonics. 2011 Jul;51(5):617-24. doi: 10.1016/j.ultras.2011.01.002. Epub 2011 Jan 8.
This paper aims to provide an alternative method to determine the characteristics of a piezoelectric transducer from measurement. A block diagram approach is proposed to analyze the dynamic characteristics of a thickness-mode piezoelectric transducer at its resonance frequency. Based on the feedback loop framework, the input-output relations of the electromechanical interaction of the transducer are described in terms of linear block diagram models. Furthermore, the closed-loop relations from external force to vibration velocity and electric current from generated voltage are easily found by Mason's rule to characterize the equivalent mechanical admittance and electrical impedance, respectively. An example of a Langevin transducer with 28.15kHz resonance frequency is illustrated for dynamics analysis. The frequency responses of the piezoelectric transducer, resulting from a force and current input, are respectively measured to identify the system parameters of the feedback model. The experimental results demonstrate the effectiveness of the proposed method.
本文旨在提供一种从测量中确定压电换能器特性的替代方法。提出了一种基于方框图的方法来分析厚度模态压电换能器在其谐振频率下的动态特性。基于反馈回路框架,以线性方框图模型的形式描述了换能器机电相互作用的输入-输出关系。此外,通过梅森规则很容易找到从外部力到振动速度和从产生电压到电流的闭环关系,分别用于表征等效机械导纳和电阻抗。以具有 28.15kHz 谐振频率的 Langevin 换能器为例进行动力学分析。分别测量压电换能器在力和电流输入下的频率响应,以识别反馈模型的系统参数。实验结果验证了所提出方法的有效性。