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A New Computational Model of Step Gauge Calibration Based on the Synthesis Technology of Multi-Path Laser Interferometers

机译:基于多路径激光干涉仪合成技术的步进仪校准的新计算模型

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摘要

A step gauge is a commonly used length standard for international comparison, and its calibration accuracy is often used as a sign to measure a country’s length Calibration and Measurement Capability (CMC). Based on this, some developed countries and developing countries all over the world have been carrying out the research of precision calibration technology for step gauge. On the basis of summarizing the current situation of step gauge calibration technology in other countries, this paper presents a new computational model of step gauge calibration based on the Synthesis Technology of Multi-Path Laser Interferometers (SMLI) and an auto-collimator, which can synthesize the three laser light paths into the measured centerline of step gauge. It is very important to obtain a good measurement accuracy for the step gauge, conformed to the Abbe principle, no matter where it is installed on the CMM measurement platform. In this paper, the development of the mathematical model, the data collection algorithms, data analysis techniques, and measurement uncertainty budgets are discussed. Finally, the experimental measurement is carried out and the measurement accuracy is verified to be effective. The results show that this method can effectively avoid the influence of Abbe error in length measurement, and significantly enhance the calibration accuracy of the step gauge.
机译:步进仪表是国际比较的常用长度标准,其校准精度通常用作来衡量国家的长度校准和测量能力(CMC)。基于这一点,世界各地的一些发达国家和发展中国家一直在进行对步进仪表精密校准技术的研究。在总结其他国家的步骤仪表校准技术现状的基础上,本文介绍了基于多路径激光干涉器(SMLI)的合成技术和自动准直技术的步骤表校准的新计算模型,可以将三个激光路径合成到步进仪表的测量中心线中。无论在CMM测量平台上安装在ABBE原则,都符合ABBE原理,非常重要的是获得良好的测量精度非常重要。本文讨论了数学模型,数据收集算法,数据分析技术和测量不确定性预算的发展。最后,进行了实验测量,验证了测量精度才能有效。结果表明,该方法可以有效地避免了ABBE误差在长度测量中的影响,并显着提高了步进表的校准精度。

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