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Complementarity of a photon-counting system and radioscopy for inspection of cast aluminium components

机译:光子计数系统和X射线检查仪的互补性,用于检查铸铝部件

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This study aims at establishing X-ray methods for inspection of cast aluminium components by combining two approaches, a radioscopic inspection, and a photon-counting system. Indeed radioscopy is widely used in castings inspection for automatic defect detection and is an efficient method for characterising rather small thicknesses, typically less than 40 mm. However, cast components often show a high range of thicknesses and imaging the whole range is difficult. We propose to use photon-counting measurements to complement the radioscopic image for high thicknesses. Photon-counting is not an imaging tool, but the thickness sensitivity obtained from photon-counting measurements (number of X-ray photons transmitted through the object) is much better than what can be obtained by classical radioscopy for up to 60 mm of aluminium. For high thicknesses of aluminium, within small volumes where defects are believed to be critical, the photon-counting system allows getting information additional to that obtained from classical radioscopy images.
机译:这项研究旨在通过结合放射线检查和光子计数系统这两种方法,建立用于铸造铝部件检查的X射线方法。实际上,射线照相术已广泛用于自动缺陷检测的铸件检查中,并且是表征较小厚度(通常小于40毫米)的有效方法。但是,铸造部件通常显示出较高的厚度范围,并且很难对整个范围进行成像。我们建议使用光子计数测量来补充高厚度的放射线图像。光子计数不是一种成像工具,但是从光子计数测量(通过物体传输的X射线光子的数量)获得的厚度灵敏度要比传统的X射线照相法测量的铝厚达60毫米要好得多。对于高厚度的铝,在认为缺陷至关重要的小体积内,光子计数系统可以获取除经典放射成像图像之外的其他信息。

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