共查询到17条相似文献,搜索用时 156 毫秒
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镓熔点是ITS-90国际温标中重要的定义固定点,在温度计量研究中起着重要作用。由于高纯镓从液态转化为固态时,体积膨胀约3. 1%,传统玻璃外壳的镓熔点容器在冻制过程中很容易造成损坏。为了解决这一难题,设计了一种具有金属外壳的镓熔点装置,以该装置为对象,开展了2种不同镓熔点复现方法和2种不同复现装置对镓相变温坪影响方面的研究,并与国外同类型装置的性能进行了比较。实验结果表明:不同镓点容器复现的镓熔点温度在0. 02 m K范围内一致,高纯镓中的微量杂质是造成差异的主要原因;外液-固界面复现方法比双液-固界面复现方法得到的温坪值低0. 09 m K;不同复现装置对镓熔点温坪的影响较小。 相似文献
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ITS-90温标固定点温坪受到诸多方面的影响,温场是其中重要影响因素之一。为提升温场性能弥补漏热造成的影响,借鉴低温固定点中广泛采用的绝热原理,设计基于准绝热的锌固定点装置,温场梯度性能由传统固定点的100 mK提升至20 mK,固定点高纯金属使用量由2.0kg降至200 g。实验结果表明该装置的温坪可持续时间较长,复现性0.1 mK,既能大幅度提升温场性能,同时达到了装置小型化、可重复使用经济实用的目的,又为高纯金属中微量杂质对相变温度的影响评估降低温场因素的干扰提供研究基础。 相似文献
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介绍了微型镓基共晶固定点的灌注工艺和准绝热相变特性测量系统;结合空腔黑体和非近位安装的温度传感器,研究了Ga-Sn和Ga-Zn共晶固定点的相变温坪重复性和Ga固定点的相变温坪长期稳定性;通过特定的热环境下镓及2个镓基共晶固定点三者熔化过程中温度传感器测量到的相变温坪值,对嵌入空腔黑体底部的温度传感器进行校准,其校准结果与实验室常规校准方法得到的结果差异均小于2mK。实验结果表明:在热环境保持不变的条件下,随着相变时间的增加,相变温坪值就越靠近理论上相变物质的熔化温度,即固定点与温度传感器测孔之间的异位温差越小;对于Ga-Sn和Ga-Zn共晶固定点,温度传感器测量到的相变温坪值与加热功率呈线性关系,零功率下的单点校准温度分别为20.352℃和25.187℃。 相似文献
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The triple point of gallium has been realized by a calorimetric method using capsule-type standard platinum resistance thermometers
(CSPRTs) and a small glass cell containing about 97 mmol (6.8 g) of gallium with a nominal purity of 99.99999%. The melting
curve shows a very flat and relatively linear dependence on 1/F in the region from 1/F = 1 to 1/F = 20 with a narrow width of the melting curve within 0.1 mK. Also, a large gallium triple-point cell was fabricated for the
calibration of client-owned CSPRTs. The gallium triple-point cell consists of a PTFE crucible and a PTFE cap with a re-entrant
well and a small vent. The PTFE cell contains 780 g of gallium from the same source as used for the small glass cell. The
PTFE cell is completely covered by a stainless-steel jacket with a valve to enable evacuation of the cell. The melting curve
of the large cell shows a flat plateau that remains within 0.03 mK over 10 days and that is reproducible within 0.05 mK over
8 months. The calibrated value of a CSPRT obtained using the large cell agrees with that obtained using the small glass cell
within the uncertainties of the calibrations. 相似文献
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X. P. Hao J. P. Sun C. Y. Xu P. Wen J. Song M. Xu L. Y. Gong L. Ding Z. L. Liu 《International Journal of Thermophysics》2017,38(6):90
Miniature Ga and Ga–In alloy fixed points as temperature standards are developed at National Institute of Metrology, China for the in situ calibration of temperature sensors. A quasi-adiabatic vacuum measurement system is constructed to study the phase-change plateaus of the fixed points. The system comprises a high-stability bath, a quasi-adiabatic vacuum chamber and a temperature control and measurement system. The melting plateau of the Ga fixed point is longer than 2 h at 0.008 W. The standard deviation of the melting temperature of the Ga and Ga–In alloy fixed points is better than 2 mK. The results suggest that the melting temperature of the Ga or Ga–In alloy fixed points is linearly related with the heating power. 相似文献