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Novel 3D sphericity evaluation based on SFS-NDT

机译:基于SFS-NDT的新型3D球形度评估

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摘要

Sphericity evaluation is an important work in modern industry. Because the former 3D measurement is complex and with low precision, a lot of sphericity evaluation is studied only based on 2D measurement. But the 2D sphericity evaluation method is reported unreasonable because sphere is a 3D object. In order to evaluate sphericity error accurately and effectively, based on SFS-NDT 3D measurement method studied in reference [Research on 3D recovery based on only one online measuring image. TianJin University, Doctor thesis (2004)], this paper proposes a novel 3D sphericity evaluation method, which use all the 3D data in the evaluation procedure. Minimum zone solution using all the 3D data is adopted to make the evaluation more accurate and reliable. Compared with the conventional sphericity evaluation based on 2D measurement, the proposed 3D evaluation has the merits of non-contact, non-destructive, low cost, high speed, and high reliable. 3D shape recovery of a sphere based on SFS and its 3D sphericity evaluation procedure will be analyzed in this paper.
机译:球形度评估是现代工业中的重要工作。由于以前的3D测量非常复杂且精度较低,因此仅基于2D测量就研究了许多球形度评估。但是,由于球形是3D对象,因此报告了2D球形度评估方法是不合理的。为了准确有效地评估球形度误差,基于参考研究的SFS-NDT 3D测量方法[仅基于一张在线测量图像的3D恢复研究。天津大学博士学位论文(2004年),本文提出了一种新颖的3D球形度评估方法,该方法将所有3D数据都用于评估过程中。采用了使用所有3D数据的最小区域解决方案,以使评估更加准确和可靠。与传统的基于2D测量的球形度评估相比,所提出的3D评估具有非接触,无损,低成本,高速度和高可靠性的优点。本文将分析基于SFS的球体的3D形状恢复及其3D球形度评估程序。

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