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Analysis of the effect of cone-beam geometry and test object configuration on the measurement accuracy of a computed tomography scanner used for dimensional measurement

机译:分析锥束几何形状和测试对象配置对用于尺寸测量的计算机断层扫描仪的测量精度的影响

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摘要

Industrial x-ray computed tomography (CT) scanners are used for non-contact dimensional measurement of small, fragile components and difficult-to-access internal features of castings and mouldings. However, the accuracy and repeatability of measurements are influenced by factors such as cone-beam system geometry, test object configuration, x-ray power, material and size of test object, detector characteristics and data analysis methods. An attempt is made in this work to understand the measurement errors of a CT scanner over the complete scan volume, taking into account only the errors in system geometry and the object configuration within the scanner. A cone-beam simulation model is developed with the radiographic image projection and reconstruction steps. A known amount of errors in geometrical parameters were introduced in the model to understand the effect of geometry of the cone-beam CT system on measurement accuracy for different positions, orientations and sizes of the test object. Simulation analysis shows that the geometrical parameters have a significant influence on the dimensional measurement at specific configurations of the test object. Finally, the importance of system alignment and estimation of correct parameters for accurate CT measurements is outlined based on the analysis.
机译:工业X射线计算机断层扫描(CT)扫描仪用于非接触式尺寸的易碎小零件以及铸件和铸件难以接近的内部特征的测量。但是,测量的准确性和可重复性受诸如锥束系统几何形状,测试对象配置,X射线功率,测试对象的材料和大小,检测器特性以及数据分析方法等因素影响。在这项工作中,尝试仅考虑系统几何尺寸和扫描仪内对象配置的错误,以了解整个扫描范围内CT扫描仪的测量误差。利用放射线图像投影和重建步骤开发了锥束仿真模型。在模型中引入了已知数量的几何参数误差,以了解锥束CT系统的几何形状对测试对象不同位置,方向和大小的测量精度的影响。仿真分析表明,几何参数对测试对象特定配置下的尺寸测量有很大影响。最后,在分析的基础上,概述了系统对准和正确参数估计对于精确CT测量的重要性。

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