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Determining the optimal pre-tightening force of a sandwich transducer by measuring resonance resistance

机译:通过测量共振电阻确定三明治式换能器的最佳预紧力

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The pre-tightening force applied on a sandwich transducer plays a key role on the transducer's vibration performance. Typically, a transducer's optimal pre-tightening force is not known during assembly. The objective of this study is to examine a method for determining the optimal pre-tightening force for a sandwich transducer. We propose that the transducer's optimal pre-tightening force can be measured indirectly through the resonance resistance. Resonance resistance is an equivalent electric parameter which reflects the transducer's mechanical energy loss, and can be measured easily using an impedance analyzer. The relationship between resonance resistance and the pre-tightening force is analyzed both theoretically and experimentally. Measurement of resonance resistance based on transducer's admittance circle is studied. Experiments involving this relationship are conducted. Results indicate that the front-end surface amplitude of the sandwich transducer reaches a maximum when the pre-tightening force is optimal, the resonance resistance tends to a minimum, but with a small offset. This indicates that the minimum value of resonance resistance corresponds closely to the highest vibration amplitude of the transducer, but not exactly. Thus, by determining the minimum resonance resistance, the optimal pre-tightening force can be determined. (C) 2016 Elsevier Ltd. All rights reserved.
机译:施加在三明治换能器上的预紧力对换能器的振动性能起关键作用。通常,在组装过程中不知道换能器的最佳预紧力。这项研究的目的是研究一种确定夹层换能器最佳预紧力的方法。我们建议可以通过共振电阻间接测量换能器的最佳预紧力。谐振电阻是等效的电参数,反映了传感器的机械能损耗,可以使用阻抗分析仪轻松测量。从理论上和实验上分析了共振阻力和预紧力之间的关系。研究了基于换能器导纳圆的谐振电阻测量。进行了涉及这种关系的实验。结果表明,当预紧力最佳时,夹层换能器的前端表面振幅达到最大值,共振电阻趋于最小,但偏移较小。这表明谐振电阻的最小值与换能器的最高振动幅度非常接近,但不完全一致。因此,通过确定最小的共振电阻,可以确定最佳的预紧力。 (C)2016 Elsevier Ltd.保留所有权利。

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