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Additive Manufacturing of Reflective Optics: Evaluating Finishing Methods

机译:反射光学的增材制造:评估加工方法

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Individually shaped light distributions become more and more important in lighting technologies and thus the importance of additively manufactured reflectors increases significantly. The vast field of applications ranges from automotive lighting to medical imaging and bolsters the statement. However, the surfaces of additively manufactured reflectors suffer from insufficient optical properties even when manufactured using optimized process parameters for the Selective Laser Melting (SLM) process. Therefore post-process treatments of reflectors are necessary in order to further enhance their optical quality. This work concentrates on the effectiveness of post-process procedures for reflective optics. Based on already optimized aluminum reflectors, which are manufactured with a SLM machine, the parts are differently machined after the SLM process. Selected finishing methods like laser polishing, sputtering or sand blasting are applied and their effects quantified and compared. The post-process procedures are investigated on their impact on surface roughness and reflectance as well as geometrical precision. For each finishing method a demonstrator will be created and compared to a fully milled sample and among themselves. Ultimately, guidelines are developed in order to figure out the optimal treatment of additively manufactured reflectors regarding their optical and geometrical properties. Simulations of the light distributions will be validated with the developed demonstrators.
机译:在照明技术中,单独成形的光分布变得越来越重要,因此,增材制造的反射器的重要性大大提高。从汽车照明到医学成像的广泛应用领域,使这一说法得到了支持。但是,即使使用针对选择性激光熔炼(SLM)工艺的优化工艺参数进行制造,增材制造的反射器的表面也会遭受光学性能不足的困扰。因此,为了进一步提高反射镜的光学质量,必须对反射镜进行后处理。这项工作集中在反射光学的后处理程序的有效性上。基于已经通过SLM机器制造的已经优化的铝制反射器,在SLM工艺之后对零件进行不同的加工。应用了诸如激光抛光,溅射或喷砂之类的精加工方法,并对它们的效果进行了量化和比较。研究了后处理程序对表面粗糙度和反射率以及几何精度的影响。对于每种精加工方法,将创建一个演示器,并将其与完全研磨的样品以及它们之间进行比较。最终,制定了指南,以就增材制造的反射镜的光学和几何特性找出最佳方案。将使用开发的演示器验证光分布的仿真。

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