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首页> 外文期刊>International Journal of Thermophysics >Development and Realization of Fe-C and Co-C Eutectic Fixed-Point Blackbodies for Radiation Thermometry at CSIR-NPL
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Development and Realization of Fe-C and Co-C Eutectic Fixed-Point Blackbodies for Radiation Thermometry at CSIR-NPL

机译:CSIR-NPL辐射温度辐射温度Fe-C和Co-C共晶定点黑色obs的开发与实现

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A series of metal-carbon (M-C) eutectics with robust reproducible melting phase transitions are evolving as the reference high-temperature fixed-points up to 3000 degrees C for radiation thermometry. The mise-en-pratique prepared for the realization and dissemination of new kelvin allows the use of set of M-C blackbody fixed-points or a combination of M-C fixed-points along with silver (Ag), gold (Au) or copper (Cu) blackbodies for the direct measurement of thermodynamic temperatures at high-temperature range. The iron-carbon (Fe-C) [1153 degrees C] and cobalt-carbon (Co-C) [1324 degrees C] fixed-point cells are the doorway to high temperature above a copper fixed-point. This paper describes the in-house development of Fe-C and Co-C eutectic graphite crucible blackbodies and their realizations by linear spectral pyrometer (LP4, 650 nm) at CSIR-NPL, National Metrology Institute (NMI) of India. The novel design and assembly approaches were employed to fabricate the blackbody crucibles with 120(o) inner-well cone, 100 mm ingot length and 8 mm aperture diameter with 0.9997 emissivity and robust thermo-mechanical stability. The eutectic ingots were prepared by multiple fillings of the homogeneously ground and mixed powders with 4.2 and 2.6 weight percentage of carbon in Fe and Co, respectively. Repeatability of measured melting plateau and uncertainty of the temperature measurement for both Fe-C and Co-C cells are presented. The ITS-90 temperatures (T-90) to these M-C fixed-points were assigned by a spectral radiance ratio measurement (Planck's Law) relative to the freezing point of Ag [961.78 degrees C]. The T-90 temperatures thus determined for Fe-C and Co-C blackbody fixed-point cells are 1154.05 degrees C and 1323.93 degrees C with the expanded uncertainty of 0.37 degrees C and 0.50 degrees C, respectively.
机译:具有稳健可再生熔化相转变的一系列金属 - 碳(M-C)共析菌是在高达3000℃的参考高温固定点,用于辐射温度的高温固定点。用于实现和传播新的Kelvin的Mise-en-Pratique允许使用MC黑体固定点或MC固定点的组合以及银(Ag),金(Au)或铜(Cu)用于直接测量高温范围的热力学温度的黑色。铁 - 碳(Fe-C)[1153℃]和钴 - 碳(CO-C)[1324℃]定点电池是高温高于铜定点的门口。本文介绍了印度CSIR-NPL,印度国家计量研究所(NMI)的线性光谱高温计(LP4,650nm)的Fe-C和Co-C共晶石墨坩埚黑色码的内部开发。采用新颖的设计和装配方法,用120(o)内孔,100mm铸锭长度和8mm光圈直径的黑体坩埚制造,具有0.9997发射率和鲁棒的热机械稳定性。通过均匀研磨和混合粉末的多次填充物制备共晶锭,分别在Fe和Co中具有4.2和2.6重量百分比的碳。提出了测量熔化平台的可重复性以及Fe-C和CO-C细胞的温度测量的不确定度。其-90温度(T-90)与这些M-C固定点相对于AG的冷冻点(Planck的定律)分配给这些M-C固定点[961.78c]。由此测定的Fe-C和CO-C黑体定点电池的T-90温度为1154.05℃和1323.93摄氏度,分别为0.37℃和0.50℃的扩展不确定度。

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