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Electrical resonance/antiresonance characterization of NDT transducer and possible optimization of impulse excitation signals width and their types

机译:NDT换能器的电气共振/反谐振表征,并可能优化脉冲励磁信号宽度及其类型

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摘要

This work presents an experimental method for obtaining the best excitation pulse type and width for optimal driving of an industrial non-destructive testing (NDT) ultrasound transducer by using its electrical impedance parameters as input. Within the optimization method, a classic low-voltage frequency sweeping signal and two different types of high-voltage impulse excitation signals (unipolar and bipolar), with different pulse widths, are used for the electromechanical characterization of the transducer. The optimization of the excitation signal is verified by measuring the voltage, current and electrical power of the excitation and received signals obtained by ultrasound pulse reflection from two cracks (2 mm and 3 mm) in a stainless-steel block. Additionally, the influence of the output electrical impedance of the power amplifier on the optimal transfer of electrical power from the amplifier to the loading (the NDT transducer on the block) and vice versa is also discussed in this work. The optimum working point for the ultrasound NDT transducer, regarding the impulse excitation type and its pulse width, is a bipolar impulse excitation with the width and amplitude calculated from maximum values of the measured voltage, electric current and power generated in the transducer receive mode by the reflected ultrasound signals.
机译:该工作提出了一种实验方法,用于获得最佳激励脉冲类型和宽度,以通过使用其电阻抗参数作为输入来获得工业无损检测(NDT)超声换能器的最佳驱动。在优化方法中,具有不同脉冲宽度的经典低压频率扫描信号和两种不同类型的高压脉冲激励信号(单极和双极),用于换能器的机电表征。通过测量激励的电压,电流和电功率和通过从不锈钢块中的两个裂缝(2mm和3mm)的超声脉冲反射而获得的电压,电流和电力来验证激励信号的优化。另外,在该工作中还讨论了功率放大器对从放大器到负载的最佳电力转移的影响(块上的NDT换能器)的影响以及反之亦然。关于脉冲激励型及其脉冲宽度的超声波NDT换能器的最佳工作点是双极脉冲激励,其宽度和幅度由换能器接收模式中的测量电压,电流和功率的最大值计算的宽度和幅度反射超声信号。

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