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Digital radiography for the inspection of small defects

机译:数字射线照相术,用于检查小缺陷

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Digital radiography offers several advantages over conventional film-based radiography for NDT applications; the digital detectors typically require much less radiation to create an image. The disadvantage of using digital detectors is the relatively poor resolution in comparison to fine-grain film. The manufacturers of such detectors counter this objection by pointing out that projection magnification can be used to increase the image size, thereby increasing the effective resolution of the final image. This is correct, if a suitable mini- or micro-focus generator is used. Unfortunately, these generators tend to be significantly lower in power, so it is essential that the detector be extremely sensitive. Many manufacturers of digital radiographic inspection units claim that their systems can use projection magnification up to a factor of 100 or more. This may be the case, but the geometric unsharpness (calculated from their own published specifications) would be many times larger than the pixel-pitch, making such high values of projection magnification redundant. TWI has been working with a consortium of digital radiographic users from across Europe. Our intention is to develop an inspection unit that uses a highly sensitive digital detector that is capable of rivalling fine-grain film in sensitivity, contrast and resolution. The samples used range from 1 mm-thick magnesium castings to 10 mm-thick steel welds.
机译:对于NDT应用,数字射线照相比传统的基于胶片的射线照相具有许多优势。数字检测器通常需要更少的辐射来生成图像。与细颗粒​​胶片相比,使用数字检测器的缺点是分辨率相对较差。这种检测器的制造商通过指出可以使用投影放大率来增加图像尺寸,从而提高最终图像的有效分辨率,来对付这一反对意见。如果使用合适的微型或微型聚焦发生器,这是正确的。不幸的是,这些发生器的功率往往要低得多,因此检测器必须非常灵敏。许多数字射线照相检查装置制造商声称,他们的系统可以使用高达100或更大倍数的投影放大率。可能是这种情况,但是几何不清晰度(根据其自己发布的规格计算)将比像素间距大很多倍,从而使投影放大率的这种高值变得多余。 TWI一直在与来自欧洲各地的数字射线照相用户协会合作。我们的目的是开发一种使用高灵敏度数字检测器的检测装置,该检测器能够在灵敏度,对比度和分辨率方面与精细胶片相媲美。使用的样品范围从1毫米厚的镁铸件到10毫米厚的钢焊缝。

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