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首页> 外文期刊>International Journal of Thermophysics >A Regional Comparison of Calibration Results for Type K Thermocouple Wire from (100 to 1,100)℃
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A Regional Comparison of Calibration Results for Type K Thermocouple Wire from (100 to 1,100)℃

机译:(100至1,100)℃K型热电偶丝校准结果的区域比较

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Under the auspices of the Inter-American Metrology System (SIM), the National Institute of Standards and Technology (NIST) initiated a regional comparison for type K thermocouples from (100 to 1,100)℃ with 11 participating countries. The use of type K material above approximately 200℃ is considered destructive. Therefore, each participating laboratory was sent new, unused wire from a lot of material characterized by NIST. The uniformity of the lot was remarkable, especially at temperatures above 500℃; the standard deviation of the thermocouple emf values of multiple cuts tested at NIST was 2.7μV or less over the full temperature range. The high uniformity eliminated any need to correct for variations of the transfer standard among the laboratories, greatly simplifying the analysis. The level of agreement among the laboratories' results was quite good. Even though test procedures and equipment varied significantly among the participants, the standard deviation of all emf values at each test temperature was less than the equivalent of 0.20℃ at 200℃ and below, and less than 0.60℃ from (400 to 1,100)℃. Of the 380 total bilateral combinations of the data at the eight test temperatures, only 13 (i.e., 3.4% of all combinations) are outside the k = 2 limits, and of these 13, only 3 are outside k = 3 limits. All the outliers occur at temperatures of 800℃ and below, which suggests that drift of the type K wire due to high-temperature oxidation did not cause changes in the thermocouple emf comparable to or larger than the claimed uncertainties.
机译:在美洲计量系统(SIM)的主持下,美国国家标准技术研究院(NIST)与11个参与国进行了(100至1,100)℃K型热电偶的区域比较。在约200℃以上使用K型材料具有破坏性。因此,向每个参与实验室发送了由NIST表征的许多材料制成的未使用过的新导线。批次的均匀性非常显着,尤其是在500℃以上的温度下;在整个温度范围内,通过NIST测试的多次切割的热电偶emf值的标准偏差为2.7μV或更小。高均匀性消除了校正实验室之间转移标准差异的任何需要,大大简化了分析。实验室结果之间的一致性水平非常好。尽管参与者的测试程序和设备差异很大,但每个测试温度下所有电动势值的标准偏差在200℃及以下时均小于0.20℃的当量,在(400至1100)℃时小于0.60℃。在八个测试温度下的380个数据的总共双边组合中,只有13个(即所有组合的3.4%)在k = 2的范围之外,而在这13个中,只有3个在k = 3的范围之外。所有异常值均发生在800℃及以下的温度下,这表明由于高温氧化引起的K型导线的漂移不会引起热电偶电动势的变化,其变化可等于或大于所声称的不确定性。

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