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Microlens Array Fabrication by Using a Microshaper

机译:微透镜阵列制造通过使用微孔

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摘要

A simple, easy, inexpensive, and quick nonsilicon-based micromachining method was developed to manufacture a microlens array. The spherical surface of the microlens was machined using a microshaper mounted on a three-axis vertical computer numerical control (CNC) machine with cutter-path-planning. The results show the machined profiles of microlens agree well with designed profiles. The focus ability of the machined microlens array was verified. The designed and measured focal lengths have average 1.5% error. The results revealed that the focal lengths of micro lens agreed with the designed values. A moderate roughness of microlens surface is obtained by simply polishing. The roughness of the lens surface is 43 nm in feed direction (x-direction) and 56 nm in path interval direction (y-direction). It shows the simple, scalable, and reproducible method to manufacture microlenses by microshaper with cutter-path-planning is feasible.
机译:开发了一种简单,简单,廉价的基于不合适的基于不合适的微机械化方法以制造微透镜阵列。使用安装在三轴垂直计算机数控(CNC)机器上的微孔采用微透镜的球形表面,具有切割路径规划。结果表明,微透镜的加工型材与设计的型材很好。验证了加工微透镜阵列的焦点能力。设计和测量的焦距平均1.5%误差。结果表明,微透镜的焦距与设计的值同意。通过简单地抛光获得微透镜表面的温和性粗糙度。透镜表面的粗糙度在进料方向(x方向)和56nm的路径间隔方向(Y方向)中为43nm。它显示了通过切割路径规划的MicroShaper制造微透镜的简单,可扩展和可重复的方法是可行的。

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