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MEASUREMENT OF T-T_(90) DOWN TO ZINC POINT TEMPERATURES WITH ABSOLUTE FILTER RADIOMETRY

机译:用绝对滤光片辐射测量测量T-T_(90)到锌点温度的测量

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In 1995, measurements of T-T_(90) for the temperature range 660°C to 962°C have been performed at the Physikalisch-Technische Bundesanstalt (PTB) using a large area blackbody (LABB) and absolute filter radiometry at 676 nm and 800 nm. Although the inner cavity of the LABB is formed by a sodium heat pipe, it has been shown [1] that the LABB can be used as an accurate source of blackbody radiation at temperatures as low as 400°C. Applying absolute interference filter radiometry with center wavelengths of 800 nm, and for the first time, 900 nm, and 1000 nm, the temperature range for thermodynamic temperature measurements of the LABB has been extended to temperatures as low as the zinc freezing point temperature of 419°C. The achieved standard uncertainty was about 20 mK for thermodynamic temperatures of 419°C. The measured thermodynamic temperatures have been compared with the temperature of the blackbody cavity measured by three high temperature standard platinum resistance thermometers (HTSPRT) located at the bottom of the radiating cavity. These HTSPRT were calibrated according to the International Temperature Scale of 1990 (ITS-90). Comparing the thermodynamic and the ITS-90 temperatures it was found that the former are always higher than the latter, with decreasing difference towards lower temperatures.
机译:在1995年,使用大面积的黑体(Labb)和676nm的绝对滤光辐射测量,在Physikalisch-Technische Bundesanstalt(PTB)上进行了温度范围为660°C至962°C的T-T_(90)的测量。 800 nm。尽管LabB的内腔由钠热管形成,但已经示出了[1],即Labb可以用作低至400℃的温度下的黑体辐射的精确源。施加绝对干涉滤光片放射测定尺寸为800nm的中心波长,第一次900nm和1000nm,Labb热力学温度测量的温度范围已经扩展到低至冰冻点温度为419的温度°C。对于419°C的热力学温度,实现的标准不确定性约为20 mk。已经将测量的热力学温度与由位于辐射腔底部的三个高温标准铂电阻温度计(Htsprt)测量的黑体腔的温度进行了比较。这些HTSPR根据1990年的国际温度等级(ITS-90)进行校准。比较热力学和其-90温度,发现前者总是高于后者的温度,对较低温度的差异降低。

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