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含缺陷复合材料的超声阵列成像模拟

Simulation of ultrasonic array imaging of composite materials with defects.

作者信息

Humeida Yousif, Pinfield Valerie J, Challis Richard E, Wilcox Paul D, Li Chuan

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2013 Sep;60(9):1935-48. doi: 10.1109/TUFFC.2013.2778.

Abstract

Ultrasonic transducer arrays are extensively used for the nondestructive evaluation of materials for aerospace and other applications. However, their use with composites requires some technique development because of reflections at the layer boundaries and the effects of attenuation. When used in full matrix capture mode, algorithms such as the total focusing method (TFM) must be applied to obtain the image. In composite materials, improvement to the algorithm is required to include the effects of material anisotropy (affecting wave speed) and optimum aperture limits to optimize the signal-to-noise ratio and location detection for a defect in the material. This paper presents simulations of the ultrasonic array signals in multilayer anisotropic materials with and without a simulated defect. A kernel model for plane wave propagation in the material is combined with an angular spectrum decomposition (for finite transducer elements) and transducer frequency response, to model the full array signals. Inclusion of the defect is through its far-field scattering response. The model facilitates the study of imaging algorithm development by identification of the effects of anisotropy, signal-to-noise ratio, and aperture limit. An analytical method for the calculation of the effective group velocity in the composite at low frequency is demonstrated, permitting rapid calculation of time delay laws in practice.

摘要

超声换能器阵列广泛应用于航空航天及其他领域材料的无损检测。然而,由于复合材料层界面处的反射以及衰减效应,将其用于复合材料检测需要进行一些技术开发。在全矩阵采集模式下使用时,必须应用诸如全聚焦方法(TFM)等算法来获取图像。对于复合材料,需要改进算法以纳入材料各向异性(影响波速)的效应以及最佳孔径限制,从而优化材料中缺陷的信噪比和位置检测。本文展示了有无模拟缺陷的多层各向异性材料中超声阵列信号的模拟。将材料中平面波传播的核模型与角谱分解(用于有限换能器元件)及换能器频率响应相结合,以模拟整个阵列信号。通过缺陷的远场散射响应来纳入缺陷。该模型有助于通过识别各向异性、信噪比和孔径限制的影响来研究成像算法的发展。文中展示了一种在低频下计算复合材料中有效群速度的解析方法,这使得在实际中能够快速计算时间延迟规律。

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