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地形测量中波动的自上而下确定

Top-down Determination of Fluctuations in Topographic Measurements.

作者信息

Lemesle Julie, Moreau Clement, Deltombe Raphael, Blateyron François, Martin Joseph, Bigerelle Maxence, Brown Christopher A

机构信息

Valutec, Université Polytechnique Hauts-de-France, CEDEX 9, 59314 Valenciennes, France.

Université Polytechnique Hauts-de-France, CNRS UMR 8201-LAMIH-Laboratoire d'Automatique, de Mécanique et d'Informatique Industrielles et Humaines, 59313 Valenciennes, France.

出版信息

Materials (Basel). 2023 Jan 4;16(2):473. doi: 10.3390/ma16020473.

Abstract

A top-down method is presented and studied for quantifying topographic map height () fluctuations directly from measurements on surfaces of interest. Contrary to bottom-up methods used in dimensional metrology, this method does not require knowledge of transfer functions and fluctuations of an instrument. Fluctuations are considered here to be indicative of some kinds of uncertainties. Multiple (), successive topographic measurements ( = (,)) are made at one location without moving the measurand relative to the measurement instrument. The measured heights () at each position (,) are analyzed statistically. Fluctuation maps are generated from the calculated variances. Three surfaces were measured with two interferometric measuring microscopes (Bruker ContourGT™ and Zygo NewView™ 7300). These surfaces included an anisotropic, turned surface; an isotropic, sandblasted surface; and an abraded, heterogeneous, multilayer surface having different, complex, multiscale morphologies. In demonstrating the method, it was found that few non-measured points persisted for all 100 measurements at any location. The distributions of uncertainties are similar to those of certain features on topographic maps at the same locations, suggesting that topographic features can augment measurement fluctuations. This was especially observed on the abraded ophthalmic lens; a scratch divides the topographic map into two zones with different uncertainty values. The distributions of fluctuations can be non-Gaussian. Additionally, they can vary between regions within some measurements.

摘要

提出并研究了一种自上而下的方法,用于直接从感兴趣表面的测量中量化地形图高度()波动。与尺寸计量学中使用的自下而上方法不同,该方法不需要了解仪器的传递函数和波动情况。这里的波动被认为是某些类型不确定性的指标。在一个位置进行多次()、连续的地形测量( = (,)),而被测物相对于测量仪器不移动。对每个位置(,)处测得的高度()进行统计分析。根据计算出的方差生成波动图。使用两台干涉测量显微镜(布鲁克ContourGT™和Zygo NewView™ 7300)对三个表面进行了测量。这些表面包括一个各向异性的车削表面;一个各向同性的喷砂表面;以及一个具有不同、复杂、多尺度形态的磨损、异质、多层表面。在演示该方法时,发现在任何位置的所有100次测量中,几乎没有未测量点留存。不确定性的分布与相同位置地形图上某些特征的分布相似,这表明地形特征会增加测量波动。这在磨损的眼科镜片上尤为明显;一条划痕将地形图分成两个具有不同不确定性值的区域。波动分布可能是非高斯分布。此外,在某些测量中,它们在不同区域之间可能会有所不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65b6/9861970/9ef126e26b04/materials-16-00473-g001.jpg

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