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Virtual source aperture imaging with auto-focusing of unknown complex geometry through dual layered media

机译:虚拟源光圈成像通过双层介质自动聚焦未知复杂几何的成像

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摘要

In this paper, a Virtual Source Aperture (VSA) surface mapping technique applicable for ultrasonic inspection of components with complex geometry through dual layered media is described. Assuming the first medium is free of significant discontinuities, the first echo arrives from the boundary between the two mediums. The surface is described by the tangent to a family of ellipses constructed using the time of the first echo from the VSA data set and the known positions of the transmitters and receivers. The Total Focusing Method, using Fermat's principle to account for refraction, is used to generate fully focused images of the test specimen interior. Using this technique, it is possible to obtain surface information and generate an image with as little as a single firing of the ultrasonic array, which will be of significance when ultra fast ultrasonic inspection is necessary. The method is tested on a series of surfaces with varying geometry and is shown to successfully image and position a series of side drilled holes within each specimen.
机译:本文描述了一种虚拟源孔径(VSA)表面映射技术,适用于通过双层介质具有复杂几何形状的组件的超声波检查。假设第一介质没有显着的不连续性,第一个回声从两个媒体之间到达边界。表面由使用来自VSA数据集的第一回波的时间和发射器和接收器的已知位置构建的椭圆形椭圆形系列的图。使用Fermat原理解除折射的总关注方法用于产生测试标本内部的完全聚焦的图像。使用该技术,可以获得表面信息并产生具有超声阵列的单个射击的图像,这对于需要超快速超声检查时,这将具有重要性。该方法在具有变化几何形状的一系列表面上测试,并显示成成功图像,并将一系列钻孔孔定位在每个样本内。

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