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首页> 外文期刊>International Journal of Thermophysics >Comparison of Blackbody Sources for Low-Temperature IR Calibration
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Comparison of Blackbody Sources for Low-Temperature IR Calibration

机译:低温红外校准黑体源的比较

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Radiation thermometers are traditionally mostly used in high-temperature applications. They are, however, becoming more common in different applications at room temperature or below, in applications such as monitoring frozen food and evaluating heat leakage in buildings. To measure temperature accurately with a pyrometer, calibration is essential. A problem with traditional, commercially available, blackbody sources is that ice is often formed on the surface when measuring temperatures below . This is due to the humidity of the surrounding air and, as ice does not have the same emissivity as the blackbody source, it biases the measurements. An alternative to a traditional blackbody source has been tested by SP Technical Research Institute of Sweden. The objective is to find a cost-efficient method of calibrating pyrometers by comparison at the level of accuracy required for the intended use. A disc-shaped blackbody with a surface pyramid pattern is placed in a climatic chamber with an opening for field of view of the pyrometer. The temperature of the climatic chamber is measured with two platinum resistance thermometers in the air in the vicinity of the disc. As a rule, frost will form only if the deposition surface is colder than the surrounding air, and, as this is not the case when the air of the climatic chamber is cooled, there should be no frost or ice formed on the blackbody surface. To test the disc-shaped blackbody source, a blackbody cavity immersed in a conventional stirred liquid bath was used as a reference blackbody source. Two different pyrometers were calibrated by comparison using the two different blackbody sources, and the results were compared. The results of the measurements show that the disc works as intended and is suitable as a blackbody radiation source.
机译:传统上,辐射温度计通常用于高温应用。然而,它们在室温或低于室温的不同应用中变得越来越普遍,例如在监控冷冻食品和评估建筑物中的热泄漏等应用中。为了使用高温计准确地测量温度,必须进行校准。传统的可商购黑体来源的问题在于,当测量低于30摄氏度的温度时,通常会在表面形成冰。这是由于周围空气的湿度所致,并且由于冰的发射率与黑体源的发射率不同,因此它会使测量结果产生偏差。瑞典SP技术研究院已经测试了传统黑体来源的替代方法。目的是通过比较预期用途所需的精度水平,找到一种经济高效的校准高温计的方法。将具有表面金字塔形图案的圆盘状黑体放置在气候室中,该室的开口用于高温计的视场。用两个铂电阻温度计在圆盘附近的空气中测量气候室的温度。通常,只有在沉积表面比周围的空气冷时才会形成霜,并且,当气候室的空气被冷却时不是这种情况,因此黑体表面不应形成霜或冰。为了测试盘形黑体源,将浸入常规搅拌液浴中的黑体腔用作参考黑体源。通过使用两种不同的黑体源进行比较,对两种不同的高温计进行了校准,并对结果进行了比较。测量结果表明,该光盘可以按预期工作,并且适合用作黑体辐射源。

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