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Design and fabrication of a micro Alvarez lens array with a variable focal length

机译:具有可变焦距的微型Alvarez透镜阵列的设计和制造

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摘要

A 5 × 5 micro Alvarez lens array mold was fabricated using a 5-axis ultraprecision diamond machine and an Alvarez lens array was manufactured by injection molding process. Unlike conventional processes for asymmetrical element fabrication such as small tool grinding, this research demonstrates slow tool servo broaching process that allows the entire Alvarez lens array to be accurately machined on a metal mold in a single operation. To further reduce manufacturing cost, injection molding was used to fabricate the Alvarez lens arrays. The mold and molded lenses were both measured using an optical profiler. All measured profiles showed a good agreement with design and surface roughness also indicated an optical surface finish. The functionality of the molded polymeric lens arrays was achieved when the focal lengths were varied by laterally translating the molded Alvarez lens array pair. This research is a demonstration of the capability of fabricating complex optics using the same approach.
机译:使用5轴超精密金刚石机器制造5×5微米的Alvarez透镜阵列模具,并通过注射成型工艺制造Alvarez透镜阵列。与传统的不对称元件制造工艺(例如小工具磨削)不同,该研究证明了慢速工具伺服拉削过程,该过程允许在单个操作中将整个Alvarez透镜阵列精确地加工在金属模具上。为了进一步降低制造成本,使用注模法制造Alvarez透镜阵列。模具和模制镜片均使用光学轮廓仪测量。所有测得的轮廓均显示出与设计的良好一致性,并且表面粗糙度也表明具有光学表面光洁度。当通过横向平移模制的Alvarez透镜阵列对来改变焦距时,可以实现模制的聚合物透镜阵列的功能。这项研究证明了使用相同方法制造复杂光学器件的能力。

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  • 来源
    《Microsystem Technologies》 |2009年第4期|559-563|共5页
  • 作者单位

    Department of Industrial Welding and Systems Engineering The Ohio State University 210 Baker Systems 1971 Neil Ave Columbus OH 43210 USA;

    Department of Industrial Welding and Systems Engineering The Ohio State University 210 Baker Systems 1971 Neil Ave Columbus OH 43210 USA;

    Department of Industrial Welding and Systems Engineering The Ohio State University 210 Baker Systems 1971 Neil Ave Columbus OH 43210 USA;

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