首页> 外文期刊>International Journal Precision Engineering Manufacturing-Green Technology >Roll-to-Roll Embossing of Optical Radial Fresnel Lenses on Polymer Film for Concentrator Photovoltaics: A Feasibility Study
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Roll-to-Roll Embossing of Optical Radial Fresnel Lenses on Polymer Film for Concentrator Photovoltaics: A Feasibility Study

机译:聚合物薄膜光径菲涅耳透镜对聚合物薄膜的轧制压花,用于浓缩仪光伏:可行性研究

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摘要

Fresnel-based concentrated photovoltaic (CPV) solar power systems have been proven effective to significantly enhance the photoelectric conversion efficiency, but a standard-size solar plant will require an extremely large amount of polymer radial Fresnel lenses. Roll-to-roll (R2R) manufacturing is a high-throughput technology to mass produce high-quality functional optical polymer film. In this paper, we have firstly studied a complete manufacturing cycle for R2R embossing of radial Fresnel lens polymer film for CPV systems, in terms of polymer lens design, roller mold machining, R2R embossing and optical performance test. Instead of wrapping an electroplated metal sheet onto the roller in conventional R2R process, the lens pattern array is directly machined using a 5-axis ultra-precision machining system to guarantee its surface quality and accuracy. Optical performance evaluation for the manufactured polymer film using a reference solar cell is conducted, and results have shown that radial Fresnel lens on the polymer film can achieve a sunlight concentration ratio 3.9 x times that of linear lenses with a much smaller receiving area. This study has explored the feasibility for R2R embossing of optical polymer film, an industry-applicable and cost-effective technology for mass production of high-quality Fresnel lenses to be used in high-efficiency CPV systems.
机译:已经证明菲涅耳的浓缩光伏(CPV)太阳能电力系统有效地提高了光电转换效率,但标准尺寸的太阳能电厂需要极大量的聚合物径向菲涅耳透镜。轧辊(R2R)制造是大量生产高质量功能光学聚合物膜的高通量技术。在本文中,我们首先研究了用于CPV系统的径向菲涅耳透镜聚合物膜的R2R压花的完整制造周期,就聚合物透镜设计,辊模加工,R2R压花和光学性能测试而言。在传统的R2R工艺中代替将电镀金属板缠绕在辊上,使用5轴超精密加工系统直接加工透镜图案阵列,以保证其表面质量和精度。使用参考太阳能电池进行制造的聚合物膜的光学性能评估,结果表明,聚合物膜上的径向菲涅耳透镜可以通过更小的接收区域实现线性透镜的阳光浓度比3.9×倍。本研究探讨了光学聚合物薄膜R2R压花的可行性,一种用于高效率CPV系统的高质量菲涅耳透镜的批量生产的行业适用和经济高效的技术。

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