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Proposition and experimental evaluation of a point-based compensation approach to reduce systematic errors in CT measurements

机译:基于点的补偿方法的主张与实验评估,减少CT测量系统误差

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摘要

Industrial applications of computed tomography (CT) for dimensional metrology have increased steadily over the last few years, despite the fact that the measurement uncertainty has rarely been evaluated and reported. Despite being an important prerequisite of any scientific or industrial measurement, the complex CT measurement chain and the numerous influencing quantities involved in the measurement process mean that the problem of evaluating the uncertainty and tracing the dimensional measurement results back to the unit of length remains an unsolved issue. In this paper, the use of master part reference measurements for later point-based compensation of CT datasets is proposed to correct known systematic effects and reduce the measurement uncertainty down to the level of the CT measurement process repeatability, for part features that can be accessed and calibrated using a reference coordinate measuring system (R-CMS). The point-based compensation approach is described, experimentally tested using a prismatic part and is discussed for several geometrical tolerance verification cases.
机译:尽管测量不确定性很少被评估并报道,但在过去几年中,计算机断层扫描(CT)的工业应用稳定地增加了。尽管是任何科学或工业计量的重要先决条件,但复杂的CT测量链和涉及测量过程中涉及的众多影响数量意味着评估不确定性并将尺寸测量结果追溯到长度单位的问题仍然是一个未解决的问题。在本文中,提出了使用主部分参考测量对CT数据集的稍后基于点的补偿,以校正可以访问的零件特征,以校正已知的系统效果并将测量不确定性降低到CT测量过程重复性的水平并使用参考坐标测量系统(R-CMS)进行校准。描述了基于点的补偿方法,使用棱柱部分进行了实验测试,并讨论了几个几何公差验证案例。

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