School of Mechanical Engineering, Kyungpook National University, Daegu 41566, Korea.
Agency for Defense Development, Changwon 51678, Korea.
Sensors (Basel). 2022 Nov 12;22(22):8743. doi: 10.3390/s22228743.
A cymbal transducer has a simple structure consisting of a piezoceramic disk and metallic caps and has broadband characteristics when built as an array. The finite element method (FEM) is generally used to analyze the characteristics of acoustic transducers. However, the FEM requires a longer analysis time as the model becomes larger, which makes it limited and less efficient for analyzing the cymbal array. In this study, a new equivalent circuit with higher efficiency and accuracy, comparable to that of the FEM, was proposed to analyze the performance of cymbal arrays. The equivalent circuit for the array was constructed by connecting the equivalent circuits of individual cymbal transducers in parallel with a radiation impedance matrix that included both the self- and mutual radiation characteristics of the array. The validity of the new equivalent circuit was verified by measuring the transmitting voltage response of a cymbal array specimen and comparing it with that calculated using the circuit. The comparison confirmed the efficiency of the equivalent circuit in analyzing the characteristics of the cymbal array. The proposed equivalent circuit can facilitate the design of a large array of cymbal transducers.
音叉换能器具有由压电陶瓷盘和金属帽组成的简单结构,当作为阵列构建时具有宽带特性。有限元法(FEM)通常用于分析声学换能器的特性。然而,随着模型的增大,FEM 需要更长的分析时间,这使得它在分析音叉阵列时受到限制且效率较低。在这项研究中,提出了一种新的等效电路,该电路具有更高的效率和准确性,可与有限元法相媲美,用于分析音叉阵列的性能。通过将单个音叉换能器的等效电路并联连接,并包括阵列的自辐射和互辐射特性的辐射阻抗矩阵,构建了用于阵列的等效电路。通过测量音叉阵列样本的发射电压响应并将其与电路计算的值进行比较,验证了新等效电路的有效性。该比较证实了等效电路在分析音叉阵列特性方面的效率。所提出的等效电路可以方便地设计大型音叉换能器阵列。