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Quantitative analysis of scaling error compensation methods in dimensional X-ray computed tomography

机译:X射线计算机断层扫描中尺度误差补偿方法的定量分析

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X-ray Computed Tomography (CT) has become an important technology for quality control of industrial components. As with other technologies, e.g., tactile coordinate measurements or optical measurements, CT is influenced by numerous quantities which may have negative impact on the accuracy and repeatability of dimensional and geometrical measurements. The aim of this paper is to discuss different methods for the correction of scaling errors and to quantify their influence on dimensional measurements. Scaling errors occur first and foremost in CT systems with no built-in compensation of positioning errors of the manipulator system (magnification axis). This article also introduces a new compensation method for scaling errors using a database of reference scaling factors and discusses its advantages and disadvantages. In total, three methods for the correction of scaling errors - using the CT ball plate, using calibrated features measured by CMM and using a database of reference values - are presented and applied within a case study. The investigation was performed on a dose engine component of an insulin pen, for which several dimensional measurands were defined. The component has a complex geometry and is made of brass, which makes its measurements with CT challenging. It is shown that each scaling error correction method results in different deviations between CT measurements and reference measurements from a CMM. Measurement uncertainties were estimated for each method, taking into consideration the contributions related to the applied correction method. The newly suggested approach using the database appeared to work well, indicating, that if the properties of a CT system under investigation are monitored using a reference object (ball bar in our case), a correction factor based on individual selected magnification factors can be applied for scaling error correction of any object, and thus no additional scanning of a reference object is needed.
机译:X射线计算机断层扫描(CT)已成为工业组件质量控制的重要技术。与其他技术(例如,触觉坐标测量或光学测量)一样,CT受大量量的影响,这可能会对尺寸和几何测量的准确性和可重复性产生负面影响。本文的目的是讨论校正缩放误差的不同方法,并量化它们对尺寸测量的影响。标度误差首先出现在CT系统中,而没有对机械手系统(放大轴)的定位误差进行内置补偿。本文还介绍了一种使用参考比例因子数据库对比例误差进行补偿的新方法,并讨论了其优缺点。总共提出了三种校正比例误差的方法-使用CT球板,使用CMM测量的校准特征以及使用参考值数据库-并在案例研究中应用。研究是在胰岛素笔的剂量引擎组件上进行的,为此定义了多个尺寸被测量物。该部件具有复杂的几何形状,并且由黄铜制成,这使其使用CT进行测量变得困难。结果表明,每种缩放误差校正方法都会导致CMM的CT测量值与参考测量值之间出现不同的偏差。考虑到与所应用的校正方法有关的贡献,每种方法的测量不确定度都进行了估算。新建议的使用数据库的方法似乎运作良好,表明如果使用参考对象(在本例中为球杆)监视正在研究的CT系统的属性,则可以应用基于各个选定放大倍数的校正因子。用于缩放任何物体的误差校正,因此不需要参考物体的额外扫描。

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