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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Evaluation of form data using computational geometric techniques - Part I: Circularity error
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Evaluation of form data using computational geometric techniques - Part I: Circularity error

机译:使用计算几何技术评估表单数据 - 第一部分:圆形误差

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The present work deals with evaluation of form error from the measured profiles obtained using a form tester, namely roundness/cylindricity measuring instrument. In Part I, details of circularity evaluation are presented. Due to eccentricity in component setting and radius-suppression inherent in the measurement, circularity error has to be evaluated with reference to a limacon. A computational geometry-based algorithm is proposed for establishing minimum circumscribed, maximum inscribed and minimum zone limacons. A new type of control hull for directly constructing equi-angular diagrams and a new procedure for updating are introduced. Validation has been done with bench-mark data set and corresponding results available in the literature. Being geometry-based algorithm, it is simple to follow and each iteration can be visualized and interpreted geometrically. On comparison with simplex search method, the proposed algorithm is found to be computationally efficient in terms of accuracy and time taken. The proposed methods can be easily implemented in computer-aided roundness measuring instruments. Extension of this work for evaluation of cylindricity error has been dealt in Part II.
机译:本工作涉及从使用形式测试仪,即圆度/圆柱测量仪器获得的测量轮廓的形式误差的评估。在I部分中,提出了循环评估的细节。由于在测量中的组件设置和半径抑制中的偏心率,必须参考Limacon评估圆形误差。提出了一种基于计算几何的算法,用于建立最小的外接,最大刻录和最小区域的Limacons。介绍了一种用于直接构建Equi角图的新型控制船体以及用于更新的新程序。验证已经使用了基准数据集和文献中可用的相应结果完成。是基于几何的算法,简单遵循,并且每个迭代都可以在几何上可视化和解释。与单纯x搜索方法进行比较,发现所提出的算法在准确性和时间的准确性和时间来计算效率。所提出的方法可以在计算机辅助圆度测量仪器中容易地实现。第二部分已在第II部分中延伸这项工作进行评估。

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