航空光电大口径平面光学窗口厚度尺寸设计分析

Thickness dimension designing and analyzing for large aperture plane optical window of aerial electro-optics

  • 摘要: 航空光电装备平面光学窗口在确定构型尺寸和组合形式后,窗口厚度对装备成像性能影响至为关键。文中从设计变量、组合形式、作用载荷3个方面对窗口设计问题进行描述分析,确定了基于结构刚性和RMS波前误差的平面窗口厚度设计目标;从光学窗口一阶结构谐振频率及其在温度和压力载荷作用下的RMS波前误差量化求解出窗口厚度尺寸范围11.9 mm~18.4 mm;提出了针对光学窗口组合工况性能计算的集成分析流程,计算得到光学窗口一阶谐振频率为151 Hz,在飞行工作时各向组合工况—流场/重力/振动作用下光学窗口RMS波前误差不大于1/10参考波长。实验测试结果表明:光学窗口RMS波前误差小于0.07参考波长,实物样机振动和飞行条件下成像清晰、稳定,证明文中窗口厚度尺寸设计分析方法正确有效。

     

    Abstract: After configuration size and combing type of aerial electro-optical equipment have been confirmed, thickness dimension is critical to its imaging performance. In this paper, window designing subject has been described and analyzed from three aspects - design variable, combing type and applied loads, plane window's thickness is specified as design object based on structural stiffness and RMS wave-front errors. based on the first order structural resonance frequency and the RMS wave-front errors of temperature and pressure effects, window thickness's dimension range has been quantitative solved and is <11.9 mm, 18.4 mm>. Integrated analyzing process has been proposed aiming at window assembly's performance in synthetic conditions, the first order structural resonance frequency of optical window assembly is 151 Hz, RMS wave-front error is less than 1/10 reference wavelength with effects on composite load-flow field and gravity and vibration in operation. Window's RMS wave-front error obtained by laboratory test is less than 0.07 reference wavelength, Images of vibration and flying test are stable and clear. Tests results indicate that designing and analyzing method of window thickness dimension is right and effective.

     

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