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通过结合高速单点金刚石铣削和精密压缩成型工艺制造红外夏克-哈特曼传感器。

Fabrication of an infrared Shack-Hartmann sensor by combining high-speed single-point diamond milling and precision compression molding processes.

作者信息

Zhang Lin, Zhou Wenchen, Naples Neil J, Yi Allen Y

出版信息

Appl Opt. 2018 May 1;57(13):3598-3605. doi: 10.1364/AO.57.003598.

Abstract

A novel fabrication method by combining high-speed single-point diamond milling and precision compression molding processes for fabrication of discontinuous freeform microlens arrays was proposed. Compared with slow tool servo diamond broaching, high-speed single-point diamond milling was selected for its flexibility in the fabrication of true 3D optical surfaces with discontinuous features. The advantage of single-point diamond milling is that the surface features can be constructed sequentially by spacing the axes of a virtual spindle at arbitrary positions based on the combination of rotational and translational motions of both the high-speed spindle and linear slides. By employing this method, each micro-lenslet was regarded as a microstructure cell by passing the axis of the virtual spindle through the vertex of each cell. An optimization arithmetic based on minimum-area fabrication was introduced to the machining process to further increase the machining efficiency. After the mold insert was machined, it was employed to replicate the microlens array onto chalcogenide glass. In the ensuing optical measurement, the self-built Shack-Hartmann wavefront sensor was proven to be accurate in detecting an infrared wavefront by both experiments and numerical simulation. The combined results showed that precision compression molding of chalcogenide glasses could be an economic and precision optical fabrication technology for high-volume production of infrared optics.

摘要

提出了一种将高速单点金刚石铣削和精密压缩成型工艺相结合的新颖制造方法,用于制造间断自由曲面微透镜阵列。与慢刀伺服金刚石拉削相比,选择高速单点金刚石铣削是因为其在制造具有间断特征的真实三维光学表面时具有灵活性。单点金刚石铣削的优势在于,基于高速主轴和直线导轨的旋转和平移运动组合,通过将虚拟主轴的轴间距设置在任意位置,可以依次构建表面特征。通过采用这种方法,将虚拟主轴的轴穿过每个微透镜单元的顶点,每个微透镜单元都被视为一个微结构单元。在加工过程中引入了基于最小面积制造的优化算法,以进一步提高加工效率。加工完模具镶件后,用其在硫系玻璃上复制微透镜阵列。在随后的光学测量中,通过实验和数值模拟证明,自行搭建的夏克-哈特曼波前传感器在检测红外波前方面是准确的。综合结果表明,硫系玻璃的精密压缩成型可能是一种用于大批量生产红外光学器件的经济且精密的光学制造技术。

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