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A New Method of Distribution of Measurement Points on Curvilinear Surfaces of Products

机译:产品曲线曲面上测量点分布的新方法

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摘要

The article presents the method of selecting scanning lines along which coordinate measurements, performed by using, e.g., a coordinate measuring machine working in the single point probing mode, of free-form surfaces of measured workpieces may be conducted. Additionally, the proposed method supports the user of a coordinate measuring system during defining the number of measurement points distributed along selected scanning lines, thus deciding on the final distribution of measurement points on a measured surface of a product. The proposed method enables distributing measurement points in the parts of a measured product characterized by the worst quality of manufacturing. Moreover, the new method is very automated, therefore it affects the increase in the efficiency of coordinate measurements. The effect of using the new method is the non-uniform distribution of measurement points located on free-form surfaces. The presented algorithm takes into account the lengths of selected cross-sections of a measured curvilinear surface of an object, its geometrical complexity and the accuracy of the probe radius correction process. The decision regarding the number of measurement points is made on the basis of the accuracy analysis of the calculations of the corrected measurement points obtained during the probe radius correction process and the accuracy of the substitute model representing a measured curvilinear surface. Two methods of the correction process were used. The accuracy of the applied methods of the probe radius compensation process was estimated on the basis of the deviations calculated between corrected measurement points and scanning lines. The selection of scanning lines and the number of measurement points was realized by using the expert system based on the fuzzy logic. The paper presents the results of both simulation and experimental investigations. The numerical calculations were performed for two selected free-form surfaces. The verification of the developed algorithm was carried out during experimental investigations based on a measurement of a selected free-form surface. The conducted research was aimed at verifying the correctness of the distribution of measurement points generated using the proposed method. In the case of real measurements, measurement points should be located in the places of surfaces of products characterized by the largest deviations of manufacturing. The results of the conducted investigations confirm the usefulness of the developed algorithm for defining the distribution of measurement points on curvilinear surfaces in the coordinate measuring technique. Moreover, the way of implementation of the developed method of the distribution of measurement points in selected commercial measurement software is presented, thus enabling the use of the new method in the industry.
机译:该文章提出了一种选择扫描线的方法,沿着该扫描线可以通过使用例如以单点探测模式工作的坐标测量机来执行被测工件的自由表面的坐标测量。另外,所提出的方法在定义沿所选扫描线分布的测量点的数量期间支持坐标测量系统的用户,从而决定了测量点在产品的被测表面上的最终分布。所提出的方法使得能够在以最差的制造质量为特征的被测产品的各部分中分布测量点。此外,新方法非常自动化,因此会影响坐标测量效率的提高。使用新方法的效果是位于自由曲面上的测量点的不均匀分布。提出的算法考虑了对象的测量曲线表面的选定横截面的长度,其几何复杂度以及探针半径校正过程的准确性。关于测量点数量的决定是基于对在探针半径校正过程中获得的校正后的测量点的计算的精度分析和代表测量的曲线表面的替代模型的精度进行的。使用了两种校正方法。根据校正后的测量点和扫描线之间的偏差估算探针半径补偿过程所应用方法的准确性。扫描线的选择和测量点的数量是通过使用基于模糊逻辑的专家系统来实现的。本文介绍了仿真和实验研究的结果。对两个选定的自由曲面进行了数值计算。在对选定自由形式表面的测量的基础上进行的实验研究期间,对开发的算法进行了验证。进行的研究旨在验证使用所提出的方法生成的测量点分布的正确性。在实际测量的情况下,测量点应位于具有最大制造偏差的产品表面位置。进行的研究结果证实了所开发的算法在坐标测量技术中定义曲线表面上的测量点分布的有用性。此外,还介绍了在选定的商业测量软件中开发测量点分布方法的实现方式,从而使该新方法可以在工业中使用。

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