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Concept and architecture of a new apparatus for cylindrical form measurement with a nanometric level of accuracy

机译:新型纳米级圆柱形状测量设备的概念和架构

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摘要

In relation to the industrial need and to the progress of technology, Laboratoire National de M´etrologie et d’Essais (LNE) would like to improve the measurement of its primary pressure standards, spherical and flick standards. The spherical and flick standards are, respectively, used to calibrate the spindle motion error and the probe, which equip commercial conventional cylindricity-measuring machines. The primary pressure standards are obtained using pressurebalances equipped with rotary pistons. To reach a relative uncertainty of 10−6 in the pressure measurement, it is necessary to know the diameters of both the piston and the cylinder with an uncertainty of 5 nm for a piston diameter of 10 mm. Conventional machines are not able to reach such an uncertainty level. That is why the development of a new machine is necessary. The purpose of this paper is to present the concepts and the architecture adopted in the development of the new equipment dedicated to cylindricity measurement at a nanometric level of a accuracy. The choice of these concepts is based on the analysis of the uncertainty sources encountered in conventional architectures. The architecture of the new ultra-high equipment as well as the associated calibration procedures will be described and detailed.
机译:关于工业需求和技术进步,国家计量与实验室实验室(LNE)希望改进其主要压力标准,球形和轻度标准的测量。球形和轻拂标准分别用于校准主轴运动误差和探头,它们配备了商用常规圆柱度测量机。基本压力标准是通过配备旋转活塞的压力平衡仪获得的。为了在压力测量中达到10-6的相对不确定度,有必要知道活塞和气缸的直径,而对于10mm的活塞直径,不确定度为5nm。传统机器无法达到这种不确定性水平。这就是为什么需要开发新机器的原因。本文的目的是介绍用于纳米级精度的圆柱度测量的新设备开发中采用的概念和体系结构。这些概念的选择基于对常规体系结构中遇到的不确定性源的分析。将描述和详细介绍新的超高设备的体系结构以及相关的校准程序。

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