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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Comparison of surface extraction techniques performance in computed tomography for 3D complex micro-geometry dimensional measurements
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Comparison of surface extraction techniques performance in computed tomography for 3D complex micro-geometry dimensional measurements

机译:3D复杂微观几何尺寸测量计算断层扫描中表面提取技术性能的比较

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摘要

The number of industrial applications of computed tomography (CT) for dimensional metrology in 10(0)-10(3) mm range has been continuously increasing, especially in the last years. Due to its specific characteristics, CT has the potential to be employed as a viable solution for measuring 3D complex micro-geometries as well (i.e., in the sub-mm dimensional range). However, there are different factors that may influence the CT process performance, being one of them the surface extraction technique used. In this paper, two different extraction techniques are applied to measure a complex miniaturized dental file by CT in order to analyze its contribution to the final measurement uncertainty in complex geometries at the mm to sub-mm scales. The first method is based on a similarity analysis: the threshold determination; while the second one is based on a gradient or discontinuity analysis: the 3D Canny algorithm. This algorithm has proven to provide accurate results in parts with simple geometries, but its suitability for 3D complex geometries has not been proven so far. To verify the measurement results and compare both techniques, reference measurements are performed on an optical coordinate measuring machine (OCMM). The systematic errors and uncertainty results obtained show that the 3D Canny adapted method slightly lower systematic deviations and a more robust edge definition than the local threshold method for 3D complex micro-geometry dimensional measurements.
机译:在10(0)-10(3)mm范围内的尺寸计量(CT)的计算机断层扫描(CT)的工业应用数量不断增加,特别是在过去几年中。由于其特定的特性,CT的可能性是用于测量3D复杂微观几何的可行解决方案(即,在亚mm尺寸范围内)。然而,存在不同的因素,可能影响CT过程性能,是其中​​的表面提取技术之一。在本文中,应用了两种不同的提取技术来测量CT的复杂小型化牙科文件,以便分析其对MM的复杂几何形状的最终测量不确定性的贡献,以便亚mm尺寸。第一种方法基于相似性分析:阈值确定;虽然第二个是基于梯度或不连续性分析:3D Canny算法。该算法已被证明,以简单的几何形状提供准确的结果,但到目前为止,它对3D复杂几何形状的适用性尚未得到证实。为了验证测量结果并比较这两种技术,在光学坐标测量机(OCMM)上执行参考测量。获得的系统误差和不确定结果表明,3D罐适应方法略低于系统偏差和比局部阈值方法略低于3D复杂微观几何尺寸测量的局部阈值方法。

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