Using micro spheres as reference artifacts for the in-situ characterization of tactile 3D micro probes along the probing sphere’s equator

E. Oertel, Eberhard Manske
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Abstract

Nano and micro coordinate measuring machines (CMMs) have been developed for the characterization of small dimensional features. They require a procedure which enables a traceable and precise characterization of probing spheres. In this contribution we explore the use of well characterized micro spheres as reference artifacts for the in-situ characterization of probing spheres along the probing sphere’s equator. The spheres are characterized using a strategy which is based on a set of tactile surface scans in conjunction with a stitching-algorithm. These micro spheres serve as a reference for the in-situ characterization of a tactile 3D micro probe on a nano measuring machine (NMM-1). Our investigations are based on a sample of eight spheres sourced from two different suppliers. Although the sample is small, we could already observe characteristics which seem to be typical for spheres of a certain type (i.e. nominal radius and material). The experiments indicate that micro spheres are a suitable reference artifact for tactile 3D micro probes. We were able to reproduce the measured mean radius of the probing sphere with a standard deviation of 31 nm using reference spheres whose nominal radius covers a range of 89 µm.
利用微球作为参考工件,沿探测球的赤道对触感 3D 微型探针进行现场表征
纳米和微坐标测量机(CMM)是为测量小尺寸特征而开发的。它们需要一种能够对探测球进行可追溯和精确表征的程序。在这篇论文中,我们探讨了如何使用特性良好的微球作为参考工件,沿着探测球的赤道对探测球进行原位表征。探测球的特征描述策略基于一组触觉表面扫描和缝合算法。这些微球可作为在纳米测量机(NMM-1)上对触觉三维微探针进行现场表征的参考。我们的研究基于两个不同供应商提供的八个微球样本。虽然样品很小,但我们已经观察到了某种类型球体的典型特征(即标称半径和材料)。实验表明,微球是触觉三维微型探头的合适参考工件。使用标称半径范围为 89 µm 的参考球,我们能够以 31 nm 的标准偏差再现探测球的测量平均半径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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