METROLOGICAL SUPPORT FOR THE VERIFICATION OF MERCURY THERMOMETERS

M. Golobokov
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Abstract

Modern liquid thermostats used for checking mercury thermometers reproduce a temperature of no more than 300 °C, while the upper limit of measurements of some types of mercury thermometers reaches 600 °C. The paper theoretically substantiates and experimentally confirms the possibility of checking mercury thermometers in temperature calibrators. The measurement equation has been compiled. The components of the transmission error of the unit of magnitude are estimated. Conditions are formulated that allow a priori to assess the possibility of checking a particular type of thermometer in a particular calibrator. All calculations are made taking into account the changes in the state verification scheme. The design of a special thermometer for studying the heterogeneity of the temperature distribution outside the working area of the calibrator channel is proposed. The dependence of the readings of a special thermometer on the depth of immersion is theoretically estimated. The disadvantages of the currently used method for determining the temperature of the protruding mercury column are noted. It is proposed to measure the temperature of the protruding column with a thermal imager, an accuracy analysis is performed. The results of experimental studies of the inhomogeneity of the temperature distribution outside the working area of the channel of the calibrator KT-2M are presented. The reproducibility of measurement results when checking thermometers in a calibrator and a liquid thermostat is estimated.
为验证水银温度计提供计量支持
用于检查水银温度计的现代液体恒温器可再现不超过 300 ℃ 的温度,而某些类型水银温度计的测量上限可达 600 ℃。本文从理论和实验上证实了在温度校准器中检查水银温度计的可能性。测量方程已经编制完成。估算了量级单位传输误差的组成部分。制定了先验条件,以评估在特定校准器中检查特定类型温度计的可能性。所有计算都考虑了状态校验方案的变化。为研究校准器通道工作区域外温度分布的不均匀性,提出了特殊温度计的设计方案。从理论上估计了特殊温度计的读数与浸入深度的关系。指出了目前使用的测定突出水银柱温度方法的缺点。建议使用热成像仪测量突出汞柱的温度,并进行了精度分析。介绍了对校准器 KT-2M 通道工作区外温度分布不均匀性的实验研究结果。在校准器和液体恒温器中检查温度计时,对测量结果的再现性进行了估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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