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Study of High-temperature Three-zone Furnace and Realization of Uniform Temperature Field

机译:高温三区炉的研究与均匀温度场的实现

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In this paper, a unique design using alumina insulation discs with the Carbolite tube furnace was proposed to enhance the temperature uniformity and reduce the heat loss when the furnace temperature is above 1000degC??. The assessment of the high temperature furnace characteristics including axial temperature distribution, radial temperature distribution, furnace loading effect and furnace reproducibility study, was conducted by using 2 pieces of Type B thermocouples after examining their inhomogeneity and calibration results. The results showed that the heat loss of the furnace can be minimized and a practical realization of the temperature uniformity in both axial and radial directions can be achieved based on the different measurement requirements. In this study, it indicates that the minimum furnace non-uniformity is 0.9degC?? in the temperature range 1000 - 1200degC?? when immersion depth of the thermocouples are fixed at 550 mm, and the maximum furnace non-uniformity is 4.0degC?? in the temperature range 1200 - 1300degC?? at 200 mm zone (400 - 600 mm). Therefore, the minimum length requirement for the thermocouple using this furnace is 580 mm in future calibrations and best axial uniformity can be achieved when the thermocouple length is longer than 730 mm.
机译:在本文中,提出了一种独特的设计,使用氧化铝绝缘盘具有Carbolite管炉,以提高温度均匀性并减少炉温高于1000DEGC的热量损失。通过使用2件B热电偶在检查其不均匀性和校准结果后,通过使用2型热电偶进行高温炉特性的评估,包括轴向温度分布,径向温度分布,炉载效果和炉再现性研究。结果表明,可以最小化炉的热损失,并且可以基于不同的测量要求实现轴向和径向方向上的温度均匀性的实际实现。在这项研究中,它表明最小炉不均匀性为0.9degc ??在温度范围内1000 - 1200DEGC ??当热电偶的浸没深度固定在550毫米时,最大炉不均匀性为4.0degc ??在温度范围内1200-1300degc ??在200 mm区(400-600 mm)。因此,使用该炉子的热电偶的最小长度要求在未来的校准中为580mm,当热电偶长度长于730毫米时,可以实现最佳轴向均匀性。

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