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New machining method of high precision infrared window part

机译:高精度红外窗口的新加工方法

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摘要

Most of the spherical shell of the photoelectric multifunctional instrument was designed as multi optical channel mode to adapt to the different band of the sensor, there were mainly TV, laser and infrared channels. Without affecting the optical diameter, wind resistance and pneumatic performance of the optical system, the overall layout of the spherical shell was optimized to save space and reduce weight. Most of the shape of the optical windows were special-shaped, each optical window directly participated in the high resolution imaging of the corresponding sensor system, and the optical axis parallelism of each sensor needed to meet the accuracy requirement of 0.05mrad.Therefore precision machining of optical window parts quality will directly affect the photoelectric system's pointing accuracy and interchangeability. Processing and testing of the TV and laser window had been very mature, while because of the special nature of the material, transparent and high refractive rate, infrared window parts had the problems of imaging quality and the control of the minimum focal length and second level parallel in the processing. Based on years of practical experience, this paper was focused on how to control the shape and parallel difference precision of infrared window parts in the processing. Single pass rate was increased from 40% to more than 95%, the processing efficiency was significantly enhanced, an effective solution to the bottleneck problem in the actual processing, which effectively solve the bottlenecks in research and production.
机译:大多数光电多功能仪器的球壳的被设计为多光信道模式适应传感器的不同频带,有主要电视,激光和红外线信道。在不影响光学系统的光的直径,风的阻力和气动性能,球壳的整体布局进行优化,以节省空间和降低体重。大部分的光学窗的形状为异形,直接参与相应的传感器系统的高分辨率成像的每个光学窗口,并满足0.05mrad.Therefore精密加工精度的要求所需的每个传感器的光轴平行度光学窗口部件的质量会直接影响到光电系统的指向精度和互换性。处理和TV和激光窗的测试已经非常成熟,而由于该材料,透明和高折射率的特殊性质,红外窗口部件具有成像质量的问题和最小焦距和第二电平的控制在处理平行。根据多年的实践经验,本文的重点是如何控制的红外窗口部件的形状和并行差分精度的处理。单合格率从40%提高到95%以上,处理效率提高显著,在实际处理中有效解决的瓶颈问题,这有效地解决了在研究和生产中的瓶颈。

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