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基于镓和镓锌固定点的小型化原位自校准温度计的研究

A Study on Miniaturized In-Situ Self-Calibrated Thermometers Based on Ga and Ga-Zn Fixed Points.

作者信息

Huang Haiying, Cai Wenlu, Mao Yongjian, Wan Kun, Wen Yong, Han Yuqiang, Zhang Qiang, Zhang Rong, Zheng Xing

机构信息

Institute of Systems Engineering, China Academy of Engineering Physics, Mianyang 621999, China.

出版信息

Sensors (Basel). 2024 Sep 4;24(17):5744. doi: 10.3390/s24175744.

Abstract

In order to ensure the reliability and accuracy of long-term temperature measurement where the thermometers are discommodious or even impossible to access for conventional periodical calibration, a study on miniaturized in-situ self-calibrated (MISSC) thermometers based on Ga and Ga-Zn fixed points was conducted using temperature scale transfer technology. One MISSC thermometer consists of three parts: the first is the fixed-points hardware, including a container with two cells separately filled with Ga and Ga-Zn; the second is the temperature sensing hardware, made of a Type T thermocouple; the third is the mini-power heating hardware, made of a film resistance. The measurement and calibration (M&C) system comprises a temperature measurement and data processing subsystem and a mini-power heating control subsystem. Then, an in-situ self-calibration can be carried out by mini-power heating from a room temperature of about 20 °C, and then by comparison between the measured phase transition plateau results and the standard fixed-points, i.e., Ga fixed point (about 29.76 °C) and Ga-Zn fixed point (about 25.20 °C). A series of experiments were performed, and the results show that: (1) both the proposed hardware design and the self-calibration method are feasible, and (2) the Φ16 mm × 25 mm MISSC thermometer is found to be the most miniaturized one that can realize reliable self-calibration in this study.

摘要

为确保在温度计不便甚至无法进行常规定期校准的情况下长期温度测量的可靠性和准确性,利用温标传递技术开展了一项基于镓(Ga)和镓锌(Ga-Zn)固定点的小型化原位自校准(MISSC)温度计的研究。一个MISSC温度计由三部分组成:第一部分是固定点硬件,包括一个有两个分别装有Ga和Ga-Zn的单元的容器;第二部分是温度传感硬件,由T型热电偶制成;第三部分是微功率加热硬件,由薄膜电阻制成。测量与校准(M&C)系统包括温度测量与数据处理子系统和微功率加热控制子系统。然后,通过从约20℃的室温进行微功率加热,再将测得的相变平台结果与标准固定点(即Ga固定点(约29.76℃)和Ga-Zn固定点(约25.20℃))进行比较,可进行原位自校准。进行了一系列实验,结果表明:(1)所提出的硬件设计和自校准方法都是可行的;(2)在本研究中,发现直径16mm×25mm的MISSC温度计是能够实现可靠自校准的最小型化的温度计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4340/11398087/4a6e60151a28/sensors-24-05744-g001.jpg

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