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Design and Mechanical Evaluation of a Capacitive Sensor-Based Indexed Platform for Verification of Portable Coordinate Measuring Instruments

机译:基于电容传感器的索引平台用于便携式坐标测量仪器验证的设计和机械评估

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摘要

During the last years, the use of Portable Coordinate Measuring Machines (PCMMs) in industry has increased considerably, mostly due to their flexibility for accomplishing in-line measuring tasks as well as their reduced costs and operational advantages as compared to traditional coordinate measuring machines (CMMs). However, their operation has a significant drawback derived from the techniques applied in the verification and optimization procedures of their kinematic parameters. These techniques are based on the capture of data with the measuring instrument from a calibrated gauge object, fixed successively in various positions so that most of the instrument measuring volume is covered, which results in time-consuming, tedious and expensive verification procedures. In this work the mechanical design of an indexed metrology platform (IMP) is presented. The aim of the IMP is to increase the final accuracy and to radically simplify the calibration, identification and verification of geometrical parameter procedures of PCMMs. The IMP allows us to fix the calibrated gauge object and move the measuring instrument in such a way that it is possible to cover most of the instrument working volume, reducing the time and operator fatigue to carry out these types of procedures.
机译:在过去的几年中,便携式坐标测量机(PCMM)在工业上的使用已大大增加,这主要是由于它们可完成在线测量任务的灵活性以及与传统坐标测量机相比降低的成本和操作优势( CMM)。然而,它们的操作具有明显的缺点,该缺点源于在其运动学参数的验证和优化程序中应用的技术。这些技术基于使用测量仪器从已校准的量具对象捕获数据,该数据被连续固定在各个位置,从而覆盖了大部分仪器测量体积,这导致了耗时,繁琐且昂贵的验证过程。在这项工作中,提出了索引计量平台(IMP)的机械设计。 IMP的目的是提高最终精度,并从根本上简化PCMM几何参数程序的校准,识别和验证。 IMP使我们能够固定已校准的仪表对象并移动测量仪器,从而可以覆盖大部分仪器工作体积,从而减少了执行此类程序的时间和操作员的疲劳感。

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