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超声系统振动的角方程模型及其传递矩阵和等效电路解法的一些性质。

Some properties of horn equation model of ultrasonic system vibration and of transfer matrix and equivalent circuit methods of its solution.

机构信息

Institute of Measurement Science, Slovak Academy of Sciences, Dúbravská cesta 9, 841 04 Bratislava, Slovakia.

出版信息

Ultrasonics. 2014 Jan;54(1):330-42. doi: 10.1016/j.ultras.2013.05.003. Epub 2013 May 16.

Abstract

Traditional technique of horn equation solved by transfer matrices as a model of vibration of ultrasonic systems consisting of sectional transducer, horn and load is discussed. Expression of vibration modes as a ratio of solutions of two Schrödinger equations gives better insight to the structure of a transfer matrix and properties of amplitudes of displacement and strain, and enables more systematic search for analytic solutions. Incorrectness of impedance matrix method and of equivalent circuit method on one hand and correctness and advantages of transfer matrix method in avoiding numerical artifacts and revealing the real features of the model on the other hand are demonstrated on examples. Discontinuous dependence of the nth resonant value on parameters of ultrasonic system, recently described in Sturm-Liouville theory, and consequently, a jump from half-wave to full-wave mode, is observed in a transducer model.

摘要

本文讨论了将传输矩阵应用于传统的号角方程求解,作为由分段换能器、号角和负载组成的超声系统振动的模型。通过将振动模式表示为两个薛定谔方程的解的比值,可以更好地了解传输矩阵的结构和位移与应变幅度的特性,并能够更系统地寻找解析解。通过实例证明了阻抗矩阵法和等效电路法的不正确性,以及传输矩阵法在避免数值伪影和揭示模型真实特征方面的正确性和优势。最近在 Sturm-Liouville 理论中描述的超声系统参数对第 n 个共振值的不连续依赖性,以及在换能器模型中从半波模式到全波模式的跳跃,也得到了观察。

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