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A Fast Calculation Method of Eccentricity of Rotary Parts Based on Least Squares

机译:基于最小二乘法的旋转部件偏心的快速计算方法

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There is often a coaxiality error between the rotary part mounted on the rotary table of the machine tool and the turntable, which affects the machining accuracy of the part. In the detection of coaxiality, the detection of eccentricity is a key issue. This paper reviews the current eccentricity calculation methods and proposes a fast calculation method of eccentricity based on least squares fitting(hereinafter referred to as LSF). Different from LSF, this method does not need the absolute coordinate values of the contour points on the rotary part, but only the relative displacement of the contour point relative to the distance measuring instrument. In addition, the method uses four points on the contour of the part as a set of data and N sets of data in total to calculate. The simulation verifies the accuracy and feasibility of the proposed method. Then, analyzes that the method is suitable for the case where the ratio between radius and eccentricity is greater than 200. The comparison proves that the method is 40-50% faster than the calculation of LSF. In order to further illustrate the feasibility of the algorithm, this paper carried out experimental verification. The results in this paper show that the method derived in this paper can quickly and accurately calculate the eccentricity between the rotary parts and the turntable.
机译:安装在机床的旋转台上的旋转部件之间通常存在同轴性误差和转盘,这影响了部件的加工精度。在检测同轴性中,偏心的检测是一个关键问题。本文审查了当前的偏心率计算方法,并提出了一种基于最小二乘拟合的偏心率的快速计算方法(以下称为LSF)。与LSF不同,该方法不需要旋转部件上的轮廓点的绝对坐标值,而是仅相对于距离测量仪器的轮廓点的相对位移。此外,该方法使用该方法的轮廓上的四个点作为一组数据和总计计算的N个数据。该模拟验证了所提出的方法的准确性和可行性。然后,分析该方法适用于半径和偏心率之间的比率大于200。比较证明,该方法比LSF的计算快40-50%。为了进一步说明算法的可行性,本文进行了实验验证。本文的结果表明,本文衍生的方法可以快速准确地计算旋转部件和转盘之间的偏心率。

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