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Optimization of complex shape part inspections with phased arrays

机译:相控阵优化复杂形状零件检测

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The non-destructive testing of complex shape parts is usually performed in immersion. In state of the art phased array equipments an image consists of a set of scan lines where dynamic depth focusing is performed in reception. To achieve the highest resolution and sensitivity, the scan lines should coincide with the path of maximum acoustic field intensity of the emitted beam. In complex part inspections, it is common that the path defined by the maximum field does not coincide with the scan lines. In order to increase the image resolution and sensitivity, this paper presents a correction algorithm to determine the locus of the foci that coincide with the maximum field intensity of the emitted beam. The proposed method was verified by comparing the images obtained with the classical approach and with that obtained by using the correction algorithm. The image comparison shows that the proposed method improves the image sensitivity and resolution.
机译:复杂形状零件的无损检测通常在浸入中进行。在现有技术的相控阵设备中,图像由一组扫描线组成,其中在接收中执行动态深度聚焦。为了获得最高的分辨率和灵敏度,扫描线应与发射束的最大声场强度的路径重合。在复杂的零件检查中,通常最大字段定义的路径与扫描线不一致。为了提高图像分辨率和灵敏度,本文提出了一种校正算法,以确定与发射光束的最大场强一致的焦点的轨迹。通过比较经典方法获得的图像和使用校正算法获得的图像,对所提出的方法进行了验证。图像比较表明,该方法提高了图像的灵敏度和分辨率。

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