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Fabrication of linear Fresnel lens using UV embossing and a micromachined roller mold

机译:使用紫外线压花和微机械辊模制作线性菲涅耳透镜

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Roll-to-roll embossing is able to produce functional optical films with high throughput and lower cost, compared to other conventional manufacturing technologies such like injection molding. In roll-to-roll ultraviolet (UV) embossing, the functional microstructures on an optical film are directly replicated from a high-precision roller mold; the roller mold requires strict control of profile accuracy and optical surface quality which have to be achieved using ultra-precision machining technology. In this study, optical films with linear Fresnel lens array have been developed by using ultra-precision diamond tuning for mold fabrication and roll-to-roll UV embossing for transferring the features from mold to the flexible plastic substrates. The roller mould for making Fresnel lens array was designed in such a way that one Fresnel lens was composed of 166 tiny prisms and all prisms have an equal-feature-height of 0.1 mm, resulting in a focal length of 82.5 mm. With the optimized roll-to-roll UV embossing process, the Fresnel lens film produced in large area demonstrated strong light concentration effect on a solar simulation system, with light intensity increased by more than 6 times.
机译:与其他传统制造技术(例如注塑)相比,卷对卷压印能够生产高产量且成本更低的功能性光学薄膜。在卷对卷紫外线(UV)压印中,光学膜上的功能微结构直接从高精度辊模复制而来。滚子模具需要严格控制轮廓精度和光学表面质量,这必须使用超精密加工技术来实现。在这项研究中,通过使用用于模具制造的超精密金刚石微调和用于将特征从模具转移到柔性塑料基材的卷对卷UV压印技术,开发了具有线性菲涅耳透镜阵列的光学薄膜。用于制造菲涅耳透镜阵列的辊模的设计方式是,一个菲涅耳透镜由166个微小的棱镜组成,所有棱镜的等高特征均为0.1 mm,焦距为82.5 mm。通过优化的卷对卷UV压印工艺,大面积生产的菲涅耳透镜膜在太阳能模拟系统上表现出强大的聚光效果,光强度提高了6倍以上。

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