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Precise certification of the temperature measuring system of the original Kosters interferometer and ways of its improvement

机译:精确认证原始的KOSTERS干涉仪的温度测量系统和改进方式

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Large Kosters interferometer for long gauge block measurements is known as a unique instrument, which for many decades is being used for the realization of the SI length unit with extremely low uncertainty values. High-precision certification of the temperature measuring system of the original Koesters interferometer has been realized, when using two alternative systems, operating simultaneously. The uncertainty level of each of the reference system is well below 1 mK. Our systems are based on platinum resistance thermometers (PRTs), calibrated directly on a gauge block with the application of the correction on velocity error. Advantages and some drawbacks of the original system are outlined. We show that in the original Kosters interferometer of INMETRO, as a result of systematic thermocouple offsets, which are specific for each particular thermocouple and the way how it is located inside the instrument, the accuracy of the system is limited to about 2 mK. The basic result of this study is that the chamber of the interferometer permits to improve gauge block temperature measurements, when the fine effects, associated with a small overheating of the gauge block surface by the measurement current of resistance thermometer, can be detected. Those effects are energy dissipation of a heat wave during its propagation in the artifact and the velocity effect in self-heating measurements. Local overheating of long gauge blocks by PRT current, which lies in range of ~0.1 mK, is found to be one of the limiting factors in precise temperature measurements of the blocks.
机译:干涉仪对于长块规测量大Kosters博士被称为的独特工具,这几十年来被用于实现SI长度单元的具有极低的不确定性值。干涉仪已被实现,使用两种可供选择的系统时,同时操作原Koesters的温度测量系统的高精度的认证。每个参考系统的不确定性水平远低于1 mK的。我们的系统是基于铂电阻温度计(PRT的),直接与校正的上速度误差应用量块上校准。优势和原有系统的一些缺陷进行了概述。我们发现,在原来的Kosters博士干涉INMETRO的,有系统的热电偶补偿,这是针对每个特定的热电偶,它是如何定位仪器内部的方式的结果是,该系统的精度限制在大约2 mK的。本研究的基本结果是干涉仪的腔室允许改善量块温度测量,当细的效果,与由电阻温度计的测量电流的量块表面的一小过热相关联,可以检测。这些效果及其在工件和在自热的测量速度影响传播期间的热波的能量耗散。通过PRT当前长量块,其位于〜0.1 mK的范围内,被发现是在块的精确的温度测量结果的限制因素中的一个的局部过热。

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