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Novel approach to enhancement of ultrasonic TOFD B-scan image for measurement of weld crack

机译:增强超声TOFD B扫描图像以测量焊接裂纹的新方法

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摘要

In order to accurately measure crack in an aluminium weld component, ultrasonic time of flight diffraction (TOFD) B-scan (cross-section scan) image with poor resolution is processed. A preprocessing method combines clutter repression and amplitude processing is proposed. A synthetic aperture focusing technique (SAFT) model is developed and by which the image is reconstructed. This work shows the principle and practical implementation of image enhancement by presenting the algorithms and the resultant images. The results show the time resolution of the image is improved following data acquisition by repressing the clutter and minimising the duration of ultrasonic impulse, and the lateral resolution of the image is enhanced by removing the redundant parabolic image by SAFT. In the ultimately processed image, the buried depth and lateral location of EMD slot tip can be identified within an error of 0·2 mm, and real fatigue crack tip can be measured within an error of 0·5 mm.
机译:为了准确地测量铝焊接部件中的裂纹,对分辨率较差的超声飞行时间衍射(TOFD)B扫描(横截面扫描)图像进行了处理。提出了一种将杂波抑制与幅度处理相结合的预处理方法。开发了合成孔径聚焦技术(SAFT)模型,并以此重建图像。这项工作通过介绍算法和所得图像,展示了图像增强的原理和实际实现。结果表明,通过抑制杂波并最小化超声脉冲的持续时间,可以改善数据采集后图像的时间分辨率,并通过SAFT去除多余的抛物线图像来提高图像的横向分辨率。在最终处理的图像中,EMD槽尖端的掩埋深度和侧向位置可以在0·2 mm的误差范围内确定,而实际的疲劳裂纹尖端可以在0·5 mm的误差范围内进行测量。

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