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Corrective finishing of a micro-aspheric mold made of tungsten carbide to 50 nm accuracy

机译:由碳化钨制成的微非球面模具的矫正精度达到50 nm

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摘要

The increasing demand on the optical performance of micro-aspheric glass lenses used for consumer, medical, as well as industrial applications places a high requirement on the surface quality of the molds used for replicating these lenses. However, it is difficult, almost impossible to generate a supersmooth surface with extremely high form accuracy by using the current cutting or grinding techniques. Therefore, this paper presents a corrective polishing process to finish micro-aspheric molds made of tungsten carbide by applying the vibration-assisted polishing method, aiming to obtain tens-of-nanometer form accuracy and subnanometer surface roughness. A polishing system which provides precise position, angle, and force control in 5 degrees of freedom (DOF) is employed for the experiments, and a tilting angle control method is introduced for the ease of the precisely controlling polishing force so as to keep the material removal rate stable. Then a dwell time algorithm is proposed by considering the scanning path of the polishing tool and the tilting angle of the workpiece. The experimental results show that after corrective polishing, the form accuracy of a micro-aspheric mold with high numerical aperture (NA) is successfully improved from 230 nm peak-to-valley (PV) to under 50 nm PV, while the surface roughness is reduced from 7.2 nm root-mean-square (rms) to 0.5 nm rms. (C) 2015 Optical Society of America
机译:对用于消费,医疗以及工业应用的微非球面玻璃透镜的光学性能的需求不断增长,这对用于复制这些透镜的模具的表面质量提出了很高的要求。然而,通过使用当前的切割或磨削技术很难,几乎不可能产生具有极高形状精度的超光滑表面。因此,本文提出了一种校正抛光工艺,该方法通过应用振动辅助抛光方法来完成由碳化钨制成的微球面模具的抛光,目的是获得数十纳米的形状精度和亚纳米的表面粗糙度。实验中使用了提供5个自由度(DOF)的精确位置,角度和力控制的抛光系统,并且引入了倾斜角度控制方法以简化精确控制抛光力的过程,从而保持材料去除率稳定。然后通过考虑抛光工具的扫描路径和工件的倾斜角度,提出了停留时间算法。实验结果表明,经过校正抛光后,具有高数值孔径(NA)的微球形非球面模具的成型精度已成功从230 nm峰谷(PV)提高到50 nm PV以下,而表面粗糙度为从7.2 nm均方根(rms)降低到0.5 nm rms。 (C)2015年美国眼镜学会

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  • 来源
    《Applied optics》 |2015年第18期|共7页
  • 作者

    Guo Jiang;

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  • 正文语种 eng
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