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Optimization of the Thermogauge Furnace for Realizing High Temperature Fixed Points

机译:用于实现高温固定点的热脱机炉优化

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The thermogauge furnace was commonly used in many NMIs as a blackbody source for calibration of the radiation thermometer. It can also be used for realizing the high temperature fixed point(HTFP). According to our experience, when realizing HTFP we need the furnace provide relative good temperature uniformity to avoid the possible damage to the HTFP. To improve temperature uniformity in the furnace, the furnace tube was machined near the tube ends with a help of a simulation analysis by "ansys workbench". Temperature distributions before and after optimization were measured and compared at 1300 °C, 1700°C, 2500 °C, which roughly correspond to Co-C(1324 °C), Pt-C(1738 °C) and Re-C(2474 °C), respectively. The results clearly indicate that through machining the tube the temperature uniformity of the Thermogage furnace can be remarkably improved. A Pt-C high temperature fixed point was realized in the modified Thermogauge furnace subsequently, the plateaus were compared with what obtained using old heater, and the results were presented in this paper.
机译:热摩托炉通常用于许多NMIS作为用于校准辐射温度计的黑体源。它还可以用于实现高温定点(HTFP)。根据我们的经验,在实现HTFP时,我们需要炉子提供相对良好的温度均匀性,以避免对HTFP的可能损坏。为了提高炉内温度均匀性,炉管在管附近加工,借助于“Ansys Workbench”的模拟分析。测量优化前后的温度分布,并在1300℃,1700℃,2500℃下进行比较,大致对应于CO-C(1324℃),Pt-C(1738℃)和RE-C(2474 °C)分别。结果清楚地表明,通过加工管,可以显着提高热气炉的温度均匀性。在改进的热摩托炉中实现了PT-C高温固定点,随后与使用旧加热器获得的内容进行了平台,并在本文中提出了结果。

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