According to the image jitter of airborne infrared turret under low temperature, the main factors inducing the image jitter are analyzed.Through modeling, thermodynamic analyzing and statics analyzing, the max deflection of the pitch stents is 0.34 mm under low temperature, and is 0.46 mm under acceleration overload.By assembling the pitch stents and solidifying the configuration, deflection of the pitch stents is controlled less in 0.05 mm, which makes the pitch stents turn smoother.Moreover, improvement measures are proposed for spin wiring mode and motor brush installation location and control data is provided, which solves the problem of image jitter of airborne infrared turret under low temperature.
Key words
lag at low temperature /
weak rigidity /
thermodynamic analysis /
image jitter /
statics analysis
{{custom_keyword}} /
{{custom_sec.title}}
{{custom_sec.title}}
{{custom_sec.content}}
References
Liu Yuming. Quality inspection standard of optical instruments for design, productions and assembly, and new technology, calibration of optical cold processing[J].Beijing:The Northern Industry Press, 2006.
Jiang Feng, Bai Bo, Zhang Jinliang, et al. Integration technology of stabilized electro-optical sight system[J]. Journal of Applied Optics, 2007, 12(2):156-158.
Xi Gangyang. Research on assembly technical for electro-optical stabilized sighting device [D].Xi'an: Xi'an Technological University, 2013.
Yang Haicheng, Wang Zhangli. Analysis and adjustment of aiming axis error for panoramic periscopic system[J]. Journal of Applied Optics, 2013, 34(2):193-197.
Chen Qiang, Zhou Wenzhe, Ren Penghui, et al. Assembly and adjustment technology for tanks gunner's primary sight optical system[J]. Journal of Applied Optics, 2013, 34(2):235-238.
Zhang Jingyue, Ji Ming, Wang Huilin. Modeling and simulation of airborne stabilized sighting system [J]. Journal of Applied Optics, 2006, 27(6):491-496.
So
{{custom_fnGroup.title_en}}
Footnotes
{{custom_fn.content}}