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Developing on-machine 3D profile measurement for deterministic fabrication of aspheric mirrors

机译:开发用于确定性制造非球面镜的机上3D轮廓测量

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摘要

Three-dimensional profile measurement is perceived as an indispensable process for deterministic fabrication of aspheric mirrors. In this work, we develop on-machine 3D profile measurement on a subaperture polishing machine, namely, JR-1800. The influences of mechanical errors, misalignments, output stability, temperature variation, and natural vibration are investigated in detail by calibration, mechanical alignment, and finite-element analysis. Two quantitative methods are presented for aligning the turntable, length gauge, and workpiece into together. An error compensation model is also developed for further eliminating misalignments. For feasibility validation, two prototypical workpieces are measured by JR-1800 and an interferometer. The results indicate that JR-1800 has an RMS repeatability of ~λ/30 (λ = 632.8 nm). The data provided by the two systems are highly coincident. Direct subtractions of the results from the two systems indicate that the RMS deviations for both segments are less than 0.07 μm.
机译:三维轮廓测量被视为确定性制造非球面镜必不可少的过程。在这项工作中,我们在亚孔径抛光机JR-1800上开发了机上3D轮廓测量。通过校准,机械对准和有限元分析,详细研究了机械误差,不对中,输出稳定性,温度变化和自然振动的影响。提出了两种将转盘,长度计和工件对齐的定量方法。还开发了误差补偿模型以进一步消除未对准。为了进行可行性验证,使用JR-1800和干涉仪测量了两个原型工件。结果表明,JR-1800的RMS重复性约为λ/ 30(λ= 632.8 nm)。这两个系统提供的数据高度一致。从两个系统直接减去结果表明,两个段的RMS偏差均小于0.07μm。

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