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Metrological investigation of radiation filtration in x-ray computed tomography

机译:X射线计算机体层摄影术中辐射过滤的计量学研究

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X-ray Computed Tomography (CT) is a nondestructive evaluation method that gains recognition in dimensional metrology applications. During a CT scan, 2D radiographs are collected that are then reconstructed to a 3D model which allows non-destructive evaluation of the specimen and assists with the characterisations of defects. This technology has the potential to provide information unobtainable by other non-destructive, non-contact techniques. There are numerous factors that can affect the CT measurement results with varying measurement uncertainty such as shifts and changes of x-ray focal spot, geometrical alignment issues and environmental issues. This study investigates the effect of physical pre and post filtration on the resultant dimensional measurements. Here, a calibrated specimen is used based on one of the considered designs for the proposed ISO 10360-11 CT for dimensional measurements. The resultant in local variations of grey values in the volume is measured for different thicknesses of copper filtering placed before and after the scanned specimen, and the resultant threshold dependent and independent measurements are evaluated. The results provide information that assists the selection of filtration in order to reduce measurement error and improve dimensional measurements, and also demonstrate that post filtration should be considered when scanning specimens that generate large amounts of scatter.
机译:X射线计算机断层扫描(CT)是一种无损评估方法,在尺寸计量学应用中得到认可。在CT扫描过程中,将收集2D射线照片,然后将其重建为3D模型,从而对样品进行无损评估并有助于表征缺陷。该技术具有提供其他非破坏性,非接触式技术无法获得的信息的潜力。有许多因素会影响测量不确定度变化的CT测量结果,例如X射线焦点的偏移和变化,几何对准问题和环境问题。这项研究调查了物理前后过滤对最终尺寸测量的影响。在此,基于所考虑的设计之一,针对建议的ISO 10360-11 CT用于尺寸测量,使用了经过校准的标本。对于在扫描样品之前和之后放置的不同厚度的铜过滤,测量体积中灰度值局部变化的结果,并评估与阈值相关和独立的结果。结果提供了有助于选择过滤以减少测量误差和改善尺寸测量的信息,并且还证明了在扫描产生大量散射的样品时应考虑进行后过滤。

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