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首页> 外文期刊>International Journal of Thermophysics >Design and Evaluation of Large-Aperture Gallium Fixed-Point Blackbody
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Design and Evaluation of Large-Aperture Gallium Fixed-Point Blackbody

机译:大孔镓定点黑体的设计与评估

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To complement existing water bath blackbodies that now serve as NIST primary standard sources in the temperature range from 15℃ to 75℃, a gallium fixed-point blackbody has been recently built. The main objectives of the project included creating an extended-area radiation source with a target emissivity of 0.9999 capable of operating either inside a cryo-vacuum chamber or in a standard laboratory environment. A minimum aperture diameter of 45 mm is necessary for the calibration of radiometers with a collimated input geometry or large spot size. This article describes the design and performance evaluation of the gallium fixed-point blackbody, including the calculation and measurements of directional effective emissivity, estimates of uncertainty due to the temperature drop across the interface between the pure metal and radiating surfaces, as well as the radiometrically obtained spatial uniformity of the radiance temperature and the melting plateau stability. Another important test is the measurement of the cavity reflectance, which was achieved by using total integrated scatter measurements at a laser wavelength of 10.6 |xm. The result allows one to predict the performance under the low-background conditions of a cryo-chamber. Finally, results of the spectral radiance comparison with the NIST water-bath blackbody are provided. The experimental results are in good agreement with predicted values and demonstrate the potential of our approach. It is anticipated that, after completion of the characterization, a similar source operating at the water triple point will be constructed.
机译:为了补充现在在15℃至75℃温度范围内作为NIST主要标准来源的水浴黑体,最近已建造了一个镓定点黑体。该项目的主要目标包括创建目标辐射率为0.9999的扩展区域辐射源,该辐射源能够在低温真空室内或标准实验室环境中运行。对于校准为准直输入几何形状或较大光斑尺寸的辐射计,最小孔径必须为45 mm。本文介绍了镓定点黑体的设计和性能评估,包括方向有效发射率的计算和测量,纯金属与辐射表面之间的界面上的温度下降所引起的不确定性估计以及辐射测量获得辐射温度和熔化平台稳定性的空间均匀性。另一个重要的测试是空腔反射率的测量,该测量是通过使用在10.6 | xm的激光波长下的总积分散射测量来实现的。该结果使人们可以预测在低温腔室的低背景条件下的性能。最后,提供了与NIST水浴黑体的光谱辐射度比较的结果。实验结果与预测值非常吻合,证明了我们方法的潜力。可以预期的是,在完成表征后,将构建一个在水三相点工作的类似水源。

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