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Effect of workpiece curvature on the tool influence function during hemispherical sub-aperture too glass polishing

机译:工件曲率对半球子孔径玻璃抛光过程中工具影响功能的影响

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摘要

The influence of workpiece curvature on the tool influence function spot during polishing of fused silica glass with cerium oxide slurry, while using a rotating hemispherical pad-foam tool for a wide variety of process conditions (tool displacement, inclination angle, and rotation rate), has been investigated. (Workpiece curvature ranged from 500 mm radius concave to 43 mm radius convex.) The TIF spot decreases in diameter and increases in the peak removal rate on more convex workpieces. In contrast, the TIF spot increases both in diameter and peak removal rate on more concave workpieces. For the range of workpiece curvatures investigated, both the spot size and the peak removal rate changed significantly, as much as 2 times. An elastic sphere-sphere contact mechanics model, which utilizes both a modified displacement (that leads to a change in the applied load) as well as a mismatch factor (that influences the pressure distribution shape), has been developed. The model was validated using both offline load-displacement measurements and finite-element analysis simulations. The model quantitatively describes the measured change in the relative contact diameter and relative pressure distribution, as well as semiquantitively describes the change in the relative volumetric removal rate on a large variety of TIF spots. The change in the volumetric removal rate for convex workpieces is a result of the balance between a decreasing spot size (reducing removal) and an increasing peak pressure (increasing removal), which usually results in relatively small changes in volumetric removal. In the case of concave workpieces, the volumetric removal rate change is also governed by a similar balance, but the spot size increase contribution dominates, resulting in a significant increase in volumetric removal rate. Understanding these trends can enable methods to add greater determinism during the fabrication of freeform optics by adjusting polishing parameters (such as dwell time) while the tool translates along a workpiece surface with different local curvatures. (C) 2021 Optical Society of America
机译:研究了在各种工艺条件(刀具位移、倾角和转速)下使用旋转半球垫泡沫刀具时,工件曲率对氧化铈抛光熔融石英玻璃时刀具影响功能点的影响。(工件曲率范围从500 mm半径凹面到43 mm半径凸面。)TIF光斑直径减小,凸面工件的峰值去除率增加。相比之下,在凹面较多的工件上,TIF斑点的直径和峰值去除率都会增加。在所研究的工件曲率范围内,光斑尺寸和峰值去除率都发生了显著变化,高达2倍。开发了一个弹性球体接触力学模型,该模型利用了一个修正位移(导致施加载荷的变化)和一个失配因子(影响压力分布形状)。该模型通过离线载荷-位移测量和有限元分析模拟进行了验证。该模型定量地描述了相对接触直径和相对压力分布的测量变化,半定量地描述了大量TIF斑点上相对体积去除率的变化。凸形工件体积去除率的变化是光斑尺寸减小(去除量减小)和峰值压力增大(去除量增大)之间平衡的结果,这通常会导致体积去除率发生相对较小的变化。在凹形工件的情况下,体积去除率的变化也受类似的平衡控制,但光斑尺寸的增加占主导地位,导致体积去除率显著增加。了解这些趋势可以使各种方法在自由曲面光学元件的制造过程中,通过调整抛光参数(如停留时间)来增加更大的确定性,同时工具沿工件表面以不同的局部曲率进行平移。(2021)美国光学学会

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  • 来源
    《Applied optics》 |2021年第4期|共10页
  • 作者单位

    Lawrence Livermore Natl Lab Livermore CA 94550 USA;

    Lawrence Livermore Natl Lab Livermore CA 94550 USA;

    Lawrence Livermore Natl Lab Livermore CA 94550 USA;

    Lawrence Livermore Natl Lab Livermore CA 94550 USA;

    Lawrence Livermore Natl Lab Livermore CA 94550 USA;

    Lawrence Livermore Natl Lab Livermore CA 94550 USA;

    Lawrence Livermore Natl Lab Livermore CA 94550 USA;

    Optimax Syst Ontario NY 14519 USA;

    Optimax Syst Ontario NY 14519 USA;

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  • 正文语种 eng
  • 中图分类 应用;
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