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利用角束楔形探头激励和检测瑞利面波进行材料非线性的实验研究。

Experimental investigation of material nonlinearity using the Rayleigh surface waves excited and detected by angle beam wedge transducers.

机构信息

School of Traffic and Transportation Engineering, Central South University, Changsha, Hunan 410075, China.

School of Traffic and Transportation Engineering, Central South University, Changsha, Hunan 410075, China.

出版信息

Ultrasonics. 2018 Sep;89:118-125. doi: 10.1016/j.ultras.2018.05.004. Epub 2018 May 12.

DOI:10.1016/j.ultras.2018.05.004
PMID:29778060
Abstract

Angle beam wedge transducers are widely used in nonlinear Rayleigh wave experiments as they can generate Rayleigh wave easily and produce high intensity nonlinear waves for detection. When such a transducer is used, the spurious harmonics (source nonlinearity) and wave diffraction may occur and will affect the measurement results, so it is essential to fully understand its acoustic nature. This paper experimentally investigates the nonlinear Rayleigh wave beam fields generated and received by angle beam wedge transducers, in which the theoretical predictions are based on the acoustic model developed previously for angle beam wedge transducers [S. Zhang, et al., Wave Motion, 67, 141-159, (2016)]. The source of the spurious harmonics is fully characterized by scrutinizing the nonlinear Rayleigh wave behavior in various materials with different driving voltages. Furthermore, it is shown that the attenuation coefficients for both fundamental and second harmonic Rayleigh waves can be extracted by comparing the measurements with the predictions when the experiments are conducted at many locations along the propagation path. A technique is developed to evaluate the material nonlinearity by making appropriate corrections for source nonlinearity, diffraction and attenuation. The nonlinear parameters of three aluminum alloy specimens - Al 2024, Al 6061 and Al 7075 - are measured, and the results indicate that the measurement results can be significantly improved using the proposed method.

摘要

角束楔形换能器在非线性瑞利波实验中被广泛应用,因为它们可以很容易地产生瑞利波,并产生高强度的非线性波进行检测。当使用这种换能器时,可能会出现杂散谐波(源非线性)和波衍射,这将影响测量结果,因此充分了解其声学性质至关重要。本文通过实验研究了角束楔形换能器产生和接收的非线性瑞利波束场,其理论预测基于先前为角束楔形换能器开发的声学模型[S. Zhang,等人,波运动,67,141-159,(2016)]。通过仔细研究不同驱动电压下各种材料中的非线性瑞利波行为,充分表征了杂散谐波的来源。此外,通过比较沿传播路径的多个位置的测量值和预测值,表明当在许多位置进行实验时,可以提取基波和二次谐波瑞利波的衰减系数。提出了一种通过对源非线性、衍射和衰减进行适当校正来评估材料非线性的技术。测量了三种铝合金试样(Al 2024、Al 6061 和 Al 7075)的非线性参数,结果表明,使用所提出的方法可以显著提高测量结果。

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