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Technologies for Precision Manufacture of Current and Future Windows and Domes

机译:用于电流和未来窗户和圆顶的精确制造技术

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The final finish and characterization of windows and domes presents a number of challenges in achieving desired precision with acceptable cost and schedule. This becomes more difficult with advanced materials and as window and dome shapes and requirements become more complex, including acute angle corners, transmitted wavefront specifications, aspheric geometries and trending toward conformal surfaces. Magnetorheological Finishing (MRF~?) and Magnetorheological Jet (MR Jet~?), along with metrology provided by Sub-aperture Stitching Interferometry (SSI~?) have several unique attributes that provide them advantages in enhancing fabrication of current and next generation windows and domes. The advantages that MRF brings to the precision finishing of a wide range of shapes such as flats, spheres (including hemispheres), cylinders, aspheres and even freeform optics, has been well documented. Recent advancements include the ability to finish freeform shapes up to 2-meters in size as well as progress in finishing challenging IR materials. Due to its shear-based removal mechanism in contrast to the pressure-based process of other techniques, edges are not typically rolled, in particular on parts with acute angle corners. MR Jet provides additional benefits, particularly in the finishing of the inside of steep concave domes and other irregular shapes. The ability of MR Jet to correct the figure of conformal domes deterministically and to high precision has been demonstrated. Combining these technologies with metrology techniques, such as SSI provides a solution for finishing current and future windows and domes in a reliable, deterministic and cost-effective way. The ability to use the SSI to characterize a range of shapes such as domes and aspheres, as well as progress in using MRF and MR Jet for finishing conventional and conformal windows and domes with increasing size and complexity of design will be presented.
机译:窗和圆顶的最后加工和表征提出了一些在实现与可接受的成本和进度所需的精确度的挑战。此变得更加困难了先进的材料和作为窗和圆顶的形状和要求变得更加复杂,包括锐角角部,透射波前的规格,非球面几何形状和朝向共形表面的趋势。磁流变抛光(MRF〜?)和磁射流(MR喷气〜?),与由子孔径拼接干涉(SSI〜?)提供计量沿着具有提供他们在提高当前和下一代窗口的制造优点几个独特的属性和圆顶。该MRF带来各种形状的精度精加工如公寓,球体(包括半球),圆柱体,非球面和甚至光学自由的优点,得到了很好的证明。最新进展包括以下能力完成自由精加工挑战IR材料形状,且大小以及进度2米。由于在对比的其它技术的基于压力的过程其基于剪切去除机构,边通常不轧制,特别是在与锐角角部的部分。 MR射流提供了额外的好处,特别是在陡凹圆顶和其它不规则形状的内部的精加工。 MR射流纠正形圆顶的身影确定性和精度高的能力已经得到证实。与计量技术,如SSI结合这些技术提供了完成当前和未来窗和圆顶在一个可靠的,确定性的和具有成本效益的方式解决。使用SSI表征范围的形状,如在使用MRF和MR射流用于精加工常规和保形窗和圆顶与尺寸和设计的复杂性增大的圆顶和非球面,以及进展的能力将被呈现。

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