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Effects of adhesive, host plate, transducer and excitation parameters on time reversibility of ultrasonic Lamb waves

机译:胶,主机板,换能器和激励参数对超声波兰伯波时间可逆性的影响

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To develop an effective baseline-free damage detection strategy using the time-reversal process (TRP) of Lamb waves in thin walled structures, it is essential to develop a good understanding of the parameters that affect the amplitude dispersion and consequently the time reversibility of the Lamb wave signal. In this paper, the effects of adhesive layer between the transducers and the host plate, the tone burst count of the excitation signal, the plate thickness, and the piezoelectric transducer thickness on the time reversibility of Lamb waves in metallic plates are studied using experiments and finite element simulations. The effect of adhesive layer on the forward propagation response and frequency tuning has been also studied. The results show that contrary to the general expectation, the quality of the reconstruction of the input signal after the TRP may increase with the increase in the adhesive layer thickness at certain frequency ranges. Similarly, an increase in the tone burst count resulting in a narrowband signal does not necessarily enhance the time reversibility at all frequencies, contrary to what has been reported earlier. For a given plate thickness, a thinner transducer yields a better reconstruction, but for a given transducer thickness, the similarity of the reconstructed signal may not be always higher for a thicker plate. It is important to study these effects to achieve the best quality of reconstruction in undamaged plates, for effective damage detection. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了使用薄壁结构中的兰姆波的时间反演过程(TRP)开发有效的无基线损伤检测策略,必须对影响振幅离散度的参数有很好的理解,从而了解其时间可逆性。兰姆波信号。本文通过实验和实验研究了换能器与主机板之间的粘合剂层,激励信号的声脉冲数,板厚度以及压电换能器厚度对金属板中兰姆波时间可逆性的影响。有限元模拟。还研究了粘合剂层对正向传播响应和频率调谐的影响。结果表明,与一般预期相反,在某些频率范围内,TRP后输入信号的重构质量可能会随粘合剂层厚度的增加而提高。类似地,与早先报道的相反,导致突发的窄带信号的音频突发计数的增加并不一定会在所有频率上增强时间可逆性。对于给定的板厚度,较薄的换能器会产生更好的重建效果,但是对于给定的换能器厚度,对于较厚的板,重建信号的相似性可能并不总是更高。重要的是要研究这些影响,以在未损坏的板上获得最佳的重建质量,以进行有效的损伤检测。 (C)2016 Elsevier B.V.保留所有权利。

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