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Simulation of piezoelectric excitation of guided waves using waveguide finite elements

机译:利用波导有限元模拟导波的压电激励

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摘要

A numerical method for computing the time response of infinite constant cross-section elastic waveguides excited by piezoelectric transducers was developed. The method combined waveguide finite elements (semi-analytical finite elements) for modeling the waveguide with conventional 3-D piezoelectric finite elements for modeling the transducer. The frequency response of the coupled system was computed and then used to simulate the time response to tone-burst electrical excitation. A technique for identifying and separating the propagating modes was devised, which enabled the computation of the response of a selected reduced number of modes. The method was applied to a rail excited by a piezoelectric patch transducer, and excellent agreement with measured responses was obtained. It was found that it is necessary to include damping in the waveguide model if the response near a ldquocut-onrdquo frequency is to be simulated in the near-field.
机译:提出了一种计算压电换能器激发的无限恒定截面弹性波导时间响应的数值方法。该方法将用于对波导建模的波导有限元(半解析有限元)与用于换能器建模的常规3-D压电有限元相结合。计算耦合系统的频率响应,然后将其用于模拟对音爆电激发的时间响应。设计了一种用于识别和分离传播模式的技术,该技术能够计算选定数量减少的模式的响应。将该方法应用于由压电贴片换能器激励的轨道,并获得了与测量响应的极佳一致性。已经发现,如果要在近场中模拟“近切频率”附近的响应,则有必要在波导模型中包括阻尼。

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