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Diamond machining of optical functional surface

机译:光学功能表面的金刚石加工

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摘要

Functional surfaces enabled by micro-/Nano-structures have been investigated intensively in recent years. In the previous work, the authors managed to manufacture an optical functional surface on 2D/3D steel surfaces by micro milling. The surface function was to maximize the contrast introduced by the orthogonal textured anisotropic surfaces where the micro ridges worked as a micro mirror array. However, due to the severe tool wear of the mill, the geometry of the micro ridges was not finished perfectly. The present paper reports a new process chain by utilizing diamond engraving to manufacture the same structures on the surface of RSA 905 with high accuracy. The manufacturing of the functional surface was conducted on an ultraprecision CNC machine. A 90° sharp tip tool were used for the shaping of the micro ridges. The tool path was programmed by Matlab and imported to the machine in the .NC format. A data matrix was used as an experimental object to test the optical functionality. Eight flat samples with different combinations of dimensions were produced to determine the machinability of the RSA 905 in terms of contrast generation. The optimal combination was the slope angle of 45° and the pitch of 50 μm. Moreover, the quantitative evaluation of the geometrical dimensions and the contrast of the microstructures was dedicated to the process optimization.
机译:近年来,通过微/纳米结构实现的功能表面已被密集地研究。在以前的工作中,作者通过微铣削,作者设法在2D / 3D钢表面上制造光学功能表面。表面功能是最大化由正交纹理的各向异性表面引入的对比度,其中微脊作为微镜阵列。然而,由于磨机的严重工具磨损,微脊的几何形状尚未完美地完成。本文通过利用钻石雕刻报告新的过程链以高精度地在RSA 905的表面上制造相同的结构。在超自眼CNC机器上进行功能表面的制造。 90°尖锐的尖端工具用于微脊的成形。刀具路径由MATLAB编程并以.nc格式导入机器。数据矩阵用作测试光学功能的实验对象。产生具有不同尺寸组合的八个平面样本,以确定RSA 905在对比产生方面的加工性。最佳组合是45°的斜角,间距为50μm。此外,对几何尺寸的定量评估和微观结构的对比度专用于过程优化。

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