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Optic-electronic processing of ball elements images

机译:光学电子处理球元素图像

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The purpose of the current paper is to validate experimentally the possibility to combine optical and computer methods for image processing. The X-ray imaging is one of the most efficient methods for inspection of the nuclear fuel elements (NFE). X-rays pass through the inspected object and cause various degrees darkening of the film placed behind the object. The visual analysis of the x-ray images can not reveal all existing layers. If one could improve detectability of layers and interfaces between layers then the inspection efficiency would be improved. As the object for investigation we chose a black-and-white x-ray image of a micro-NFE. The analysis of the image was conducted by four methods. In the first method the image was illuminated in the standard way, the zirconium layer was not observed. In the second method the image was illuminated by 30 degrees inclined light beam. In this case the zirconium layer was observed. In the third method the image was processed using the computer program Femtoscan. The third zirconium layer was not observed. In the fourth method we sequentially used optical and computer X-ray image processing. The third zirconium layer was clearly observed. Thus, application of the both methods is desirable, the optical and the computer, for X-ray image processing. This provides the maximum effect.
机译:目前纸张的目的是通过实验验证,可以组合光学和计算机方法进行图像处理的可能性。 X射线成像是检查核燃料元件(NFE)的最有效的方法之一。 X射线穿过被检查的物体,并导致放置在物体后面的薄膜的各种程度。 X射线图像的视觉分析无法透露所有现有层。如果可以改善层之间的层次和层之间的接口,则检查效率将得到改善。作为调查的对象,我们选择了微量NFE的黑白X射线图像。通过四种方法进行图像的分析。在第一种方法中,图像以标准方式照明图像,未观察到锆层。在第二种方法中,图像被30度倾斜光束照射。在这种情况下,观察到锆层。在第三种方法中,使用计算机程序Femtoscan处理图像。未观察到第三锆层。在第四种方法中,我们顺序使用光学和计算机X射线图像处理。清楚地观察第三锆层。因此,可以应用两种方法的应用,光学和计算机,用于X射线图像处理。这提供了最大效果。

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