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Parametric Study of Bolt Clamping Effect on Resonance Characteristics of Langevin Transducers with Lumped Circuit Models

机译:集总电路模型的螺栓夹紧对兰格文传感器共振特性影响的参数研究

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摘要

We recently proposed a numerical model using equivalent circuit models to analyze the resonance characteristics of Langevin transducers and design them in a systematic manner. However, no pre-load torque biased by a metal bolt was considered in the model. Here, a parametric study is, therefore, carried out to reveal how model parameters are adapted to incorporate the pre-compression effect into our existing model. Analytical results are compared with corresponding experimental data, particularly regarding the input electrical impedance and effective electromechanical coupling coefficient for the transducer at resonance modes. The frequency response of input impedance is presented as a function of torque, both theoretically and experimentally. For 10.0 N·m bias, for instance, both resonance and anti-resonance frequencies are calculated as 38.64 kHz and 39.78 kHz, while these are measured as 38.62 kHz and 39.77 kHz by the impedance analyzer. The impedance difference between these cases is 14 Ω at resonance and 9 kΩ at anti-resonance, while the coupling coefficients in both cases become 0.238 and 0.239, respectively. Hence, these test results are closely matched with their theoretical values. Consequently, this study provides a quantitative guideline that specifies the pre-loading condition of bolt clamps with proper parameter settings to predict the intended resonance characteristics of Langevin transducers.
机译:我们最近提出了一个使用等效电路模型的数值模型,以分析Langevin换能器的共振特性并以系统的方式进行设计。但是,模型中未考虑金属螺栓偏置的预紧扭矩。因此,这里进行了一项参数研究,以揭示如何调整模型参数以将预压缩效果纳入我们现有的模型中。将分析结果与相应的实验数据进行比较,尤其是在共振模式下换能器的输入电阻抗和有效机电耦合系数方面。在理论上和实验上,输入阻抗的频率响应都表示为转矩的函数。例如,对于10.0 N·m的偏置,谐振和反谐振频率都被计算为38.64 kHz和39.78 kHz,而阻抗分析仪将其测量为38.62 kHz和39.77 kHz。这两种情况下的阻抗差在谐振时为14Ω,在反谐振时为9kΩ,而两种情况下的耦合系数分别为0.238和0.239。因此,这些测试结果与其理论值紧密匹配。因此,本研究提供了定量指南,该指南指定了具有适当参数设置的螺栓夹具的预加载条件,以预测兰格文换能器的预期共振特性。

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