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Angular Sensitivity of Heat Flux Gages

机译:热通量测量的角度敏感性

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摘要

The response of a heat flux gage depends on both the angular distribution of the source radiant flux and the angular sensitivity of the coating on a gage's heat-sensing element. The issue becomes important for the calibration of apparatuses designed to test the response of materials subjected to a known level of incident thermal radiation. In this study, the angular sensitivity of several different gage coatings are measured by rotating the gage sensing surface in front of a black body source. Ideally, gage output is proportional to the cosine of the angle of incidence with respect to the normal, known as Lambertian behavior. Some commercial black coatings become non-Lambertian for angles above 60° from the surface normal, but other coatings maintain a Lambertian response beyond 70°. The impact of these differences on the calibration of the Fire Propagation Apparatus and the Cone Calorimeter is evaluated.
机译:热通量计的响应取决于源辐射通量的角分布和涂层对量具的热敏元件的角度敏感性。该问题对于校准设计用于测试经过已知的入射热辐射水平的材料响应的装置变得重要。在这项研究中,通过在黑体源前面旋转测量剂感测表面来测量几种不同量具涂层的角度敏感性。理想地,量大输出与相对于正常的入射角的余弦成比例,称为兰伯语行为。一些商用黑色涂料从表面正常的60°以上的角度变成非兰伯语,但其他涂层保持在70°之外的灯光响应。评估这些差异对火传播装置和锥形量热计的校准的影响。

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