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Mechanical behavior of silica optical fibers coated with low-index low-surface energy perfluorinated polymer

机译:低折射率低表面能全氟聚合物包覆的二氧化硅光纤的机械性能

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Abstract: Two formulations based on perfluorinated polymer were prepared for use as UV-curable optical cladding for silica fibers. In the first formulation an adhesion promoting agent based on fluoroacrylate resin was synthesized and mixed with the experimental product Defensa 7702$+$PLU$/$PLU in order to promote wetting and chemical adhesion to the silica fibers. In the second formulation, wetting and physical adhesion between the liquid coating and the silica fibers were achieved by increasing the viscosity of the starting coating by addition of unsaturated perfluorinated polymer into Defensa. Both formulations were used as primary coatings on dual coated silica optical fibers. The mechanical behavior of the formulations was characterized by the strip test, the pull-out test and zero stress aging in 90 degrees Celsius pH 7 buffer. The results show that both formulations exhibit better wetting-adhesion characteristics than unmodified starting coating and that the strength degradation during zero- stress aging was lower for the fiber coated with the formulation of higher viscosity. !4
机译:摘要:制备了两种基于全氟聚合物的配方,用作石英纤维的紫外光固化光学包层。在第一个配方中,合成了一种基于氟丙烯酸酯树脂的粘合促进剂,并与实验产品Defensa 7702 $ + $ PLU $ / $ PLU混合,以促进对二氧化硅纤维的润湿和化学粘合。在第二种配方中,通过向Defensa中添加不饱和的全氟化聚合物来增加起始涂层的粘度,从而实现了液体涂层与二氧化硅纤维之间的润湿和物理粘合。两种配方都用作双涂层石英光纤上的底涂层。通过剥离试验,拉出试验和在90摄氏度pH 7缓冲液中的零应力老化来表征制剂的机械性能。结果表明,与未改性的起始涂层相比,两种配方均表现出更好的润湿粘合特性,并且在零应力时效过程中,强度较高的涂层所涂覆的纤维的强度降解较低。 !4

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