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Freeform and conformal optical manufacturing

机译:自由曲面和保形光学制造

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Future optical systems are moving away from traditional spherical optics. The anticipated benefits are numerous for freeform optics as they provide better aerodynamic characteristics for aircraft, lighter weight for space missions, and smaller size for medical procedures. Currently the design and utilization of conformal and freeform shapes are costly due to the difficulties introduced with fabrication and metrology of these parts. Techniques for creating these complex optical surfaces are still in development for traditional optical materials. OptiPro has a unique opportunity create manufacturing solutions through computer controlled multi-axis optical generating, polishing, and metrology machines. OptiPro Systems is continuing to develop advanced optical manufacturing technologies. OptiPro has made toric and freeform arch shapes. OptiPro's existing manufacturing platforms include its eSX grinding, UltraForm Finishing, and UltraSurf non-contact surface scanning system, which will be used for grinding, polishing, and measuring conformal and freeform shapes. Freeform surfaces are initially generated using deterministic micro-grinding with diamond bonded tools. Tool paths with up to five axes of simultaneous motion are required to generate and polish the optical figure of conformal surfaces. Sub-aperture corrective polishing will need to vary the amount of time the tool contacts at each location in order to remove the proper amount of material. These locations and dwell times are derived from a surface figure error map provided by OptiPro's UltraSurf. Research and development of the freeform manufacturing process will be presented.
机译:未来的光学系统正在远离传统的球形光学系统。自由形式的光学器件具有许多预期的好处,因为它们为飞机提供了更好的空气动力学特性,为航天任务提供了更轻的重量,为医疗程序提供了更小的尺寸。由于这些零件的制造和计量困难,目前,保形和自由形状的设计和利用成本很高。传统光学材料仍在开发用于创建这些复杂光学表面的技术。 OptiPro拥有通过计算机控制的多轴光学生成,抛光和计量机器创建制造解决方案的独特机会。 OptiPro Systems正在继续开发先进的光学制造技术。 OptiPro制作了复曲面和自由形式的拱形。 OptiPro现有的制造平台包括其eSX研磨,UltraForm精加工和UltraSurf非接触式表面扫描系统,这些系统将用于研磨,抛光和测量共形和自由形状。最初使用确定性的微研磨和金刚石键合工具生成自由曲面。需要使用最多五个同时运动轴的刀具路径来生成和抛光保形表面的光学图形。子孔径矫正抛光将需要改变工具在每个位置接触的时间,以去除适当数量的材料。这些位置和停留时间是从OptiPro的UltraSurf提供的表面图形误差图得出的。将介绍自由形式制造过程的研究和开发。

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