首页> 外文会议>10th international symposium on measurement and quality control 2010 >ACCURACY ANALYSIS OF DIFERENT PROBES USED IN ARTICULATED ARM COORDINATE MEASURING MACHINES
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ACCURACY ANALYSIS OF DIFERENT PROBES USED IN ARTICULATED ARM COORDINATE MEASURING MACHINES

机译:臂式坐标测量机中使用的不同问题的精度分析

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A very important task in a normal measurement operation or in the procedure of identifying the parameters of a kinematic model of an articulated arm coordinate measuring machine (AACMM) is the process of capturing data. This paper analyzes the probing error when using different probing systems (self-centering passive probe and self- centering active probe) in both, the measurements of geometric primitives and data capture procedure for kinematic parameter identification. Moreover, the influence of the probing direction over the error is analyzed through its components in each of the axis-directions of the sixth reference system of the measurement arm. This influence is presumably attributable to the forces exerted during the probing process in different directions to the probe orientation. With this analysis it is possible to establish correlations between the probing error, the probing direction and the position of the AACMM to get that position and orientation. Furthermore, an analysis of the accuracy and repeatability of the captured points has been carried out by comparing these points to nominal points materialized by a ball-bar gauge distributed in several positions of the measurement volume. The results with each of the systems studied show the advantages and original accuracy obtained with the self-centering active probe, and thus its suitability in verification and kinematic parameter identification procedures.
机译:在正常的测量操作中或在确定关节臂坐标测量机(AACMM)的运动学模型的参数的过程中,非常重要的任务是捕获数据的过程。本文分析了在使用不同的探测系统(自对中无源探头和自对中有源探头),几何图元的测量和运动参数识别的数据捕获程序这两种情况下的探测误差。此外,通过其在测量臂的第六参考系统的每个轴向上的分量来分析探测方向对误差的影响。这种影响大概归因于在探测过程中沿与探头方向不同的方向施加的力。通过这种分析,可以在探测误差,探测方向和AACMM的位置之间建立相关性,以获得该位置和方向。此外,通过将捕获的点的精度和可重复性与分布在测量体积的多个位置的球杆式量规实现的名义点进行比较,从而对捕获点的准确性和可重复性进行了分析。每个所研究系统的结果均显示了使用自定心有源探头获得的优势和原始精度,因此适用于验证和运动学参数识别程序。

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