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Hybrid Glass Coatings for Optical Fibers. Preliminary Results of Coating Performance on Silica Fibers

机译:用于光纤的混合玻璃涂层。二氧化硅纤维涂层性能的初步结果

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Key requirements for specialty optical fibers engaged in various aerospace applications are extended lifetime and superb performance combined with small fiber diameter, minimal bend radius and ease of terminations. To address these requirements, the use of novel inorganic -organic materials called hybrid glass was proposed as single and double coats. Several types of hybrid glass candidate materials were applied on line on silica fibers as 7-35 μm thick single- or double -layer coats. The hybrid glass applied on silica fibers formed a non-strippable glasslike layer that was permanently bonded to the fiber surface. SEM analysis showed smooth, crack-free surfaces of the coatings and their strong adherence to the glass surface. To evaluate the protective ability of the hybrid coatings, the 2-point bending testing (dynamic fatigue) was controlled in a controlled temperature and humidity environment. Dynamic fatigue plots, the stress corrosion parameter n, Weibull strength distribution plots and average bending strength were calculated from the 2-point bending test data for each type of coated fiber tested. Two polymer coated fibers were used as reference and were tested as well. The hybrid glass coatings offered higher values for both fiber strength and n than those found for reference fibers. The UV induced photopolymerization of coating materials crosslinked the inorganic- network. The UV curing contributed also to the condensation process of inorganic constituents of the coatings and their permanent bonding to the silica fiber surface.
机译:延长各种航空航天应用的特种光纤的主要要求延长了寿命和精湛的性能,结合小的纤维直径,最小的弯曲半径和易于终端。为了解决这些要求,提出了使用称为杂种玻璃的新型无机 - 无机材料,如单一和双层。在二氧化硅纤维上施加几种类型的混合玻璃候选材料,为7-35μm厚的单层或双层涂层。施加在二氧化硅纤维上的混合玻璃形成了永久粘合到纤维表面的不可剥离的玻璃状层。 SEM分析显示涂层的平滑,无裂缝表面及其对玻璃表面的强粘附性。为了评估混合涂层的保护能力,在受控温度和湿度环境中控制2点弯曲测试(动态疲劳)。动态疲劳图,应力腐蚀参数N,Xeibull强度分布图和平均弯曲强度根据每种类型的涂覆纤维测试的2点弯曲试验数据计算。将两种聚合物涂覆的纤维用作参考并进行测试。杂交玻璃涂层为纤维强度和N的纤维强度提供更高的值,而不是用于参考纤维的值。 UV诱导的涂料光聚合的涂层材料交联无机网络。 UV固化也有助于涂层的无机成分的冷凝过程及其与二氧化硅纤维表面的永久粘合。

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