Infrared and Laser Engineering, Volume. 48, Issue 6, 604002(2019)

Design of temperature control system for infrared thermal imager under non-uniform temperature field

Song Xincheng1,2、*, Zhang Yu1, Shi Yanfei1, Li Maozhong2, Li Hongbing2, Huang Pan2, and Chen Ji2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    In order to reduce the ambient temperature and the non-uniform temperature field formed by the internal heating elements, the imaging performance of the infrared thermal imager was affected. The finite element model of the infrared thermal imager was established by Proe and Ansys ICEPARK. The black anodizing and blasting treatment on the surface of the infrared lens enhanced the radiation heat transfer, and the fan was used to enhance the convection heat transfer to ensure the heat dissipation in the high temperature environment. The thermal resistance was designed for temperature rise, and the internal temperature distribution and infrared lens temperature distribution of the infrared thermal imager under different temperature environments were simulated and analyzed. The infrared thermal imager in thehigh and low temperature chamber was used to observe the target in the collimator. The image quality of the graph verified the efficiency of the temperature control design. The results show that the temperature control circuit board can control the temperature of the fan and the thermal resistance. When the ambient temperature drops to 0 ℃ and rises to 30 ℃, The temperature control system is activated to make the temperature of the infrared thermal imager optical system normal, and the imaging quality of the infrared thermal imager is ensured.

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    Song Xincheng, Zhang Yu, Shi Yanfei, Li Maozhong, Li Hongbing, Huang Pan, Chen Ji. Design of temperature control system for infrared thermal imager under non-uniform temperature field[J]. Infrared and Laser Engineering, 2019, 48(6): 604002

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    Paper Information

    Category: 红外技术及应用

    Received: Aug. 10, 2018

    Accepted: Sep. 19, 2018

    Published Online: Jul. 29, 2019

    The Author Email: Xincheng Song (sxc2654037745@163.com)

    DOI:10.3788/irla201948.0604002

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