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Plate thickness and transducer distance dual inversion with dry contact ultrasonic Lamb wave transducers

机译:板厚和换能器距离采用干式超声波兰姆波换能器双重反转

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Ultrasonic Lamb wave techniques are widely used in a number of NDE applications. Recent development in dry contact Lamb wave transducers enables one to efficiently excite Lamb waves without the aid of liquid couplant. However, in order to perform thickness measurement in a plate-like structures, the transducer to transducer distance has to be fixed and known to a good accuracy, which places strict mechanical requirements during actual implementation. In this paper, we propose a novel technique that utilizes spectrum analysis on the receiver signal and invert for both the plate thickness and transducer to transducer distance. A pair of pin transducers are used to excite and detect the A/sub 0/ mode Lamb wave in a plate and the receiver waveform is captured for a windowed FFT. The signal phase changes with both the plate thickness and the transmitter to receiver distance, but with different sensitivity coefficients. Therefore, with proper calibration, we are able to use an optimization algorithm to perform simultaneous thickness and distance inversion. With the relaxed requirement for known transducer to transducer distance, this technique extends the advantages of the dry contact transducers with added implementation flexibility.
机译:超声波兰姆波技术已广泛用于许多NDE应用中。干接触兰姆波传感器的最新发展使人们无需借助液体耦合剂就能有效地激发兰姆波。然而,为了在板状结构中执行厚度测量,换能器到换能器的距离必须是固定的并且以良好的精度已知,这在实际实施中提出了严格的机械要求。在本文中,我们提出了一种新颖的技术,该技术利用对接收器信号的频谱分析并反转板厚和换能器到换能器的距离。一对针式换能器用于激发和检测平板中的A / sub 0 /模式兰姆波,并捕获接收器波形以进行开窗FFT。信号相位随板厚和发射器到接收器的距离而变化,但是具有不同的灵敏度系数。因此,通过适当的校准,我们能够使用优化算法来同时执行厚度和距离反演。在对已知换能器到换能器距离的宽松要求下,该技术扩展了干触点换能器的优势,并增加了实现的灵活性。

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