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Advances in freeform optics fabrication for conformal window and dome applications

机译:保形窗口和圆顶应用的自由形式光学制造方面的进展

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摘要

Freeform optical shapes or optical surfaces that are designed with non-symmetric features are gaining popularity with lens designers and optical system integrators. This enabling technology allows for conformal sensor windows and domes that provide enhanced aerodynamic properties as well as environmental and ballistic protection. In order to provide ballistic and environmental protection, these conformal windows and domes are typically fabricated from hard ceramic materials. Hard ceramic conformal windows and domes provide two challenges to the optical fabricator. The material hardness, polycrystalline nature and non-traditional shape demand creative optical fabrication techniques to produce these types of optics cost-effectively. This paper will overview a complete freeform optical fabrication process that includes ultrasonic generation of hard ceramic surfaces, high speed VIBE polishing, sub-aperture figure correction of polycrystalline materials and final testing of freeform surfaces. This paper will highlight the progress made to each of the processes as well as the challenges associated with each of them.
机译:具有非对称特征的自由形状的光学形状或光学表面在透镜设计者和光学系统集成商中越来越受欢迎。这种启用技术允许使用共形的传感器窗口和圆顶,从而提供增强的空气动力学特性以及环境保护和防弹保护。为了提供弹道和环境保护,这些共形窗口和圆顶通常由硬陶瓷材料制成。坚硬的陶瓷保形窗和圆顶给光学制造商带来了两个挑战。材料的硬度,多晶性质和非传统形状要求创新的光学制造技术,以经济高效地生产这些类型的光学器件。本文将概述一个完整的自由曲面光学制造工艺,包括超声波产生的坚硬陶瓷表面,高速VIBE抛光,多晶材料的亚孔径图形校正以及自由曲面的最终测试。本文将重点介绍每个流程的进展以及与每个流程相关的挑战。

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