Comparison of optical 3D scanner and coordinate measurement system from the standpoint of macro-geometry measurement

B. Pätoprstý, M. Vozár, Róbert Hrušecký, I. Buranský
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Abstract

The aim of the experiment described in the paper was to determine the possibility of using an optical 3D scanner to measure the macro-geometry of cutting tools. To verify this possibility, a precise component was measured, and the accuracy of optical 3D scanner was compared to a tactile coordinate measurement machine. A precise cemented carbide rod was used as a reference part and the measurement data were compared with the measurement result from the ZEISS Prismo coordinate measurement machine. The data obtained from the measurements were evaluated and compared. The experiment was carried out so that the use of an optical 3D scanner to measure cutting tools could be verified based on the desired requirements. Both dimensions and geometrical tolerancing – circularity were measured. The experiment has shown that an optical 3D scanner can achieve sufficient accuracy for the purpose of measuring macro-geometry of cutting tools.
从宏观几何测量的角度比较光学 3D 扫描仪和坐标测量系统
本文所述实验的目的是确定使用光学三维扫描仪测量切削工具宏观几何形状的可能性。为了验证这种可能性,对一个精密部件进行了测量,并将光学三维扫描仪的精度与触觉坐标测量机进行了比较。使用一根精密的硬质合金棒作为参考部件,将测量数据与蔡司 Prismo 坐标测量机的测量结果进行比较。对测量获得的数据进行了评估和比较。进行该实验的目的是根据预期要求验证使用光学三维扫描仪测量切削工具的有效性。对尺寸和几何公差--圆度都进行了测量。实验结果表明,光学 3D 扫描仪在测量切削工具的宏观几何尺寸方面可以达到足够的精度。
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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