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Fabrication of a mini multi-fixed-point cell for the calibration of industrial platinum resistance thermometers

机译:用于校准工业铂电阻温度计的迷你多固定点电池的制造

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摘要

A mini multi-fixed-point cell (length 118 mm, diameter 33 mm) containing three materials (In-Zn eutectic (mass fraction 3.8% Zn), Sn and Pb) in a single crucible was designed and fabricated for the easy and economical fixed-point calibration of industrial platinum resistance thermometers (IPRTs) for use in industrial temperature measurements. The melting and freezing behaviors of the metals were investigated and the phase transition temperatures were determined using a commercial dry-block calibrator. Results showed that the melting plateaus are generally easy to realize and are reproducible, flatter and of longer duration. On the other hand, the freezing process is generally difficult, especially for Sn, due to the high supercooling required to initiate freezing. The observed melting temperatures at optimum set conditions were 143.11 degrees C (In-Zn), 231.70 degrees C (Sn) and 327.15 degrees C (Pb) with expanded uncertainties (k = 2) of 0.12 degrees C, 0.10 degrees C and 0.13 degrees C, respectively. This multi-fixed-point cell can be treated as a sole reference temperature-generating system. Based on the results, the realization of melting points of the mini multi-fixed-point cell can be recommended for the direct calibration of IPRTs in industrial applications without the need for a reference thermometer.
机译:在单个坩埚中含有三种材料(Zn共晶(质量分数3.8%Zn),Sn和Pb)的迷你多固定点电池(长118mm,直径33mm),为简单和经济地设计和制造工业铂电阻温度计(IPRTS)的定点校准,用于工业温度测量。研究了金属的熔融和冷冻行为,并使用商业干嵌段校准器测定相变温度。结果表明,熔化的平稳通常易于实现,并且是可重复的,更平坦和更长的持续时间。另一方面,由于需要冻结所需的高过冷却,冷冻过程通常难以困难,特别是对于Sn。最佳设定条件下观察到的熔化温度为143.11℃(Zn),231.70℃(Sn)和327.15摄氏度(Pb),其膨胀不确定性(k = 2),0.12℃,0.10c和0.13度C分别。该多固定点电池可以被视为唯一参考温度产生系统。基于结果,可以建议迷你多固定点电池的熔点的实现,以便在工业应用中直接校准IPRTS,而无需参考温度计。

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