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具有三环和四环六边形包层结构的聚甲基丙烯酸甲酯微结构聚合物光纤的切割

Cleaving of PMMA Microstructured Polymer Optical Fibers with 3- and 4-Ring Hexagonal Cladding Structures.

作者信息

Guijarro Rubén, Tapetado Alberto, Sánchez Montero David, Vázquez Carmen

机构信息

Electronics Technology Department, University Carlos III of Madrid, 28911 Leganés, Madrid, Spain.

出版信息

Polymers (Basel). 2021 Apr 22;13(9):1366. doi: 10.3390/polym13091366.

Abstract

The cleaving of a novel microstructured polymer optical fiber (mPOF) to obtain an acceptable connectorized fiber end-face is studied. The effect of the blade temperature and the speed of the cutting blade on the end-face is qualitatively assessed. Recently manufactured mPOFs with air-structured 3- and 4-ring hexagonal-like hole cladding structures with outer fiber diameters of around 250 μm are employed. Good quality end-faces can be obtained by cleaving mPOF fibers at room temperature for blade temperatures within the range 60-80 °C and at a low blade speed at 0.5 mm/s. The importance of the blade surface quality is also addressed, being a critical condition for obtaining satisfactory mPOF end-faces after cleaving. From our experiments, up to four fiber cuts with the same razor blade and blade surface can be carried out with acceptable and similar fiber end-face results.

摘要

研究了切割新型微结构聚合物光纤(mPOF)以获得可接受的连接光纤端面的方法。定性评估了刀片温度和切割刀片速度对端面的影响。采用了最近制造的具有空气结构的3环和4环六边形孔包层结构、外光纤直径约为250μm的mPOF。在室温下,当刀片温度在60-80°C范围内且刀片速度为0.5mm/s的低速时,切割mPOF光纤可获得高质量的端面。还讨论了刀片表面质量的重要性,这是切割后获得令人满意的mPOF端面的关键条件。根据我们的实验,使用同一剃须刀片和刀片表面,最多可进行四次光纤切割,光纤端面结果可接受且相似。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ee1/8122345/50a9ddc08688/polymers-13-01366-g001.jpg

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