杨毓鑫, 王学新, 张旭, 俞兵, 李四维, 谢毅, 闫晓宇. 红外隐身涂料环温发射率校准技术[J]. 应用光学, 2023, 44(3): 655-660. DOI: 10.5768/JAO202344.0304004
引用本文: 杨毓鑫, 王学新, 张旭, 俞兵, 李四维, 谢毅, 闫晓宇. 红外隐身涂料环温发射率校准技术[J]. 应用光学, 2023, 44(3): 655-660. DOI: 10.5768/JAO202344.0304004
YANG Yuxin, WANG Xuexin, ZHANG Xu, YU Bing, LI Siwei, XIE Yi, YAN Xiaoyu. Emissivity calibration technology for infrared stealth coatings at ambient temperature[J]. Journal of Applied Optics, 2023, 44(3): 655-660. DOI: 10.5768/JAO202344.0304004
Citation: YANG Yuxin, WANG Xuexin, ZHANG Xu, YU Bing, LI Siwei, XIE Yi, YAN Xiaoyu. Emissivity calibration technology for infrared stealth coatings at ambient temperature[J]. Journal of Applied Optics, 2023, 44(3): 655-660. DOI: 10.5768/JAO202344.0304004

红外隐身涂料环温发射率校准技术

Emissivity calibration technology for infrared stealth coatings at ambient temperature

  • 摘要: 发射率作为飞机蒙皮隐身性能的关键指标,是评估飞机综合隐身性能的重要手段。介绍了红外隐身涂料光谱发射率的测量方法,研制了环境温度条件下红外隐身涂料光谱发射率校准装置,设计了基于迈克尔逊干涉理论的傅里叶变换光谱仪实现光谱分光,采用镀金积分球样品室实现信号的垂直入射与漫射接收,实现了隐身涂层光谱发射率的准确测量。提出以漫反射片为标准物质的溯源方法,实现了测量装置的溯源。利用校准装置对黄铜等样品的光谱发射率进行测量,给出了光谱范围为3 μm~12 μm的测量结果,光谱发射率测量不确定度优于3.2%(k=2)。

     

    Abstract: As the key index of stealth performance of aircraft skin, the emissivity is an important means to evaluate the comprehensive stealth performance of the aircraft. The spectral emissivity measurement method of infrared stealth coatings was introduced, and the corresponding calibration device at ambient temperature was established. A Fourier transform spectrometer based on Michelson interference theory was designed to realized the spectral splitting. The sample chamber with gold-plated integrating sphere was used to realize the vertical incidence and diffuse receiving of the signal, and the accurate measurement for spectral emissivity of stealthy coating was realized. A traceability method using diffuse reflection films as the reference standard was proposed, which realized the traceability of calibration device. Finally, the spectral emissivity of brass and other samples was measured by using the proposed calibration device, and the measurement results with a spectral range of 3 μm~12 μm were obtained. The measurement uncertainty of spectral emissivity is better than 3.2% (k=2).

     

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