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Comparison of Emissivity Evaluation Methods for Infrared Sources

机译:红外光源发射率评估方法的比较

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This paper starts with a back to basics review of the definition of blackbody emissivity, how it is measured and how it is specified. Infrared source vendors provide emissivity specifications for their blackbodies and source plates, but there is fine print associated with their declarations. While there is an industry agreement concerning the definition of emissivity, the data sheets for blackbodies and source plates are not consistent in how they base their claims. Generally, there are two types of emissivity specifications published in data sheets; one based on design properties of the source and thermometric calibration, and another based on an equivalent radiometric calibrated emissivity. The paper details how the source properties including geometry, surface treatment, and coatings are characterized and result in an emissivity value by design. The other approach is that the emissivity can be claimed to be essentially 100% when measured directly with a radiometer. An argument is derived to show that as the optical parameters of the unit under test and the radiometer diverge, the less useful an equivalent radiometric emissivity claim is. Also discussed, is under what test conditions the absolute emissivity does not matter. Further suggestions on how to achieve the clearest comparative emissivity specifications are presented.
机译:本文首先回顾了黑体发射率的定义,如何测量以及如何指定黑体发射率。红外光源供应商为其黑体和光源板提供了发射率规范,但其声明上有精美的字样。尽管就发射率的定义达成了行业协议,但是黑体和源极板的数据表在其主张依据方面不一致。通常,数据表中发布了两种类型的发射率规范:一个基于辐射源的设计属性和温度校准,另一个基于等效的辐射校准辐射率。本文详细介绍了源特性(包括几何形状,表面处理和涂层)如何表征并通过设计得出辐射率值。另一种方法是,直接用辐射计测量时,可以认为发射率基本上为100%。得出一个论点以表明,随着被测单元的光学参数和辐射计的发散,等效的辐射度发射率要求不太有用。还讨论了,在什么测试条件下绝对发射率并不重要。提出了有关如何实现最清晰的比较发射率规范的进一步建议。

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