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Harnessing Deep-Hole Drilling to Fabricate Air-Structured Polymer Optical Fibres

机译:利用深孔钻制造空气结构聚合物光纤

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摘要

The performance of a precisely controlled drilling technique is critical in the fabrication process of microstructured polymer optical fibres. For the creation of a holey preform, adequate drilling bits with large length-to-diameter ratios provide the ability of machining preforms with complex structures and large lengths in a relatively short time. In this work, we analysed different drilling bits and techniques that can be employed for the creation of such preforms, and key parameters characterising the quality of the drilled holes, such as surface rugosity, diameter deviation, coaxiality and cylindricity were measured. For this purpose, based on theoretical simulations, four rings of air holes arranged in a hexagonal pattern were drilled in the preforms with different drill bits, and the experimental results for the above mentioned parameters have been presented. Additionally, optical power distribution of the fabricated microstructured polymer optical fibres was theoretically calculated and experimentally measured.
机译:在微结构化聚合物光纤的制造过程中,精确控制的钻孔技术的性能至关重要。为了产生有孔的预成型件,具有大的长径比的足够的钻头提供了在相对短的时间内加工具有复杂结构和大长度的预成型件的能力。在这项工作中,我们分析了可用于创建此类预成型件的不同钻头和技术,并测量了表征钻孔质量的关键参数,例如表面皱纹度,直径偏差,同轴度和圆柱度。为此,在理论模拟的基础上,用不同的钻头在预成型坯中钻出了四个以六角形排列的气孔环,并给出了上述参数的实验结果。另外,理论上计算和实验测量了所制造的微结构化聚合物光纤的光功率分布。

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