首页> 外文会议>ASME Conference on Smart Materials, Adaptive Structures and Intelligent Systems >MANUFACTURE OF LENSES AND DIFFRACTION GRATINGS USING DLP AS AN ADDITIVE MANUFACTURING TECHNOLOGY
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MANUFACTURE OF LENSES AND DIFFRACTION GRATINGS USING DLP AS AN ADDITIVE MANUFACTURING TECHNOLOGY

机译:使用DLP作为添加剂制造技术的镜片和衍射光栅的制造

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This document condenses the results obtained when 3D printing lenses and their potential use as diffraction gratings using Digital Light Processing (DLP), as an additive manufacturing technique. This project investigated the feasibility of using DLP additive manufacturing for producing custom designed lenses and gratings. DLP was identified as the preferred manufacturing technology for gratings fabrication. Diffraction gratings take advantage of the anisotropy, inherent in additive manufacturing processes, to produce a collated pattern of multiple fringes on a substrate with completely smooth surfaces. The gratings are transmissive and were manufactured with slit separations of 10, 25 and 50 μm. More than 50 samples were printed at various build angles and mechanically treated for maximum optical transparency. The variables of the irradiance equation were obtained from photographs taken with an optical microscope. These values were used to estimate theoretical irradiance patterns of a diffraction grating and compared against the experimental 3-D printed grating. The resulting patterns were found to be remarkably similar in amplitude and distance between peaks when compared to theoretical values.
机译:本文档在使用数字光处理(DLP)中,将3D打印镜片及其潜在用途作为衍射光栅作为添加剂制造技术,请冷凝器。该项目调查了使用DLP添加剂制造生产定制设计镜片和光栅的可行性。 DLP被识别为光栅制造的优选制造技术。衍射光栅利用附加制造工艺中固有的各向异性,以在具有完全光滑的表面上的基板上产生多个条纹的整理图案。光栅是透射性的,并以10,25和50μm的狭缝分离制造。以各种构建角印刷超过50个样品,并机械处理以最大的光学透明度。从用光学显微镜拍摄的照片获得辐照方程的变量。这些值用于估计衍射光栅的理论辐照度模式,并与实验3-D印刷光栅进行比较。与理论值相比,发现所产生的图案在峰值之间的幅度和峰值之间非常相似。

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