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Recent Developments in Finishing of Deep Concave, Aspheric, and Piano Surfaces Utilizing the UltraForm 5-axes Computer Controlled System

机译:利用超滤5轴电脑控制系统完成深凹面,非球面和钢琴曲面的最新发展

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OptiPro Systems has developed a robust 5-axes computer controlled platform, for implementation of the sub-aperture UltraForm Finishing (UFF) process specifically focused on finishing AlON, spinel and transparent polycrystalline alumina (PCA) steep concave, convex and ogive shaped infrared domes and aspheres. Traditional manufacturing of optical components typically involves a three-stage process: grinding, lapping and polishing. The lapping and polishing stages are focused at reducing the surface roughness while preserving the integrity of the form acquired during grinding. Polishing of non spherical and irregular shapes is nearly impossible using traditional full aperture techniques. However, finishing these non-spherical and irregular shapes is possible using UltraForm Finishing. A brief description of the evolution of the UltraForm hardware and processes will be presented, with the current hardware developments. A review of the results with regard to form/figure and roughness improvements on glass, AlON and transparent PCA will be presented using a variety of grinding and finishing abrasives. Differences in the abrasive materials, some bound, and others loose in a slurry have a large impact on the process cycle time and resultant surface roughness.
机译:OptiPro系统开发了一种强大的5轴计算机控制平台,用于实施子孔径超滤精加工(UFF)工艺,专门针对精加工的Alon,尖晶石和透明多晶硅氧化铝(PCA)陡峭的凹形,凸和耳形红外圆顶非球面。传统的光学元件制造通常涉及三级工艺:研磨,研磨和抛光。研磨和抛光阶段聚焦在减小表面粗糙度时,同时保留在研磨过程中获得的形式的完整性。使用传统的全孔径技术几乎不可能抛光非球形和不规则形状。然而,使用超滤整理可以完成这些非球形和不规则形状。将介绍超无关硬件和过程的演化的简要说明,目前的硬件开发将显示。使用各种研磨和精加工磨料,将介绍对玻璃,ALON和透明PCA的形式/图和粗糙度改善的结果审查。磨料材料的差异,一些绑定和其他在浆料中松散的其他物质对过程循环时间和所得表面粗糙度具有很大的影响。

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