聚合物光纤在极端条件下的性能

P. Vihinen, I. Kassamakov, M. Schorpp, H. Saarikko
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引用次数: 0

摘要

研究了两种现代聚合物光纤在-35℃~ 85℃温度范围内以2mm半径反复弯曲和拉伸直至失效的苛刻条件下的性能。同时研究了紧半径弯曲引起的高应力对折射率分布的影响是否大到足以影响光纤的性能。测试表明,250 mm厚的PMMA基样品纤维能够经受温度循环要求的100,000次弯曲,而不会显著增加其衰减。纤维也能够保持其性能,直到伸长接近其断裂点。与其他弯曲相关的影响相比,光纤折射率分布变化的影响是微不足道的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance of Polymer Optical Fibers under Extreme Conditions
The performance of two modern polymer optical fibers was studied under demanding conditions including repeated bending with 2 mm radius in temperature range of -35 degC to 85 degC and pulling until failure. Also studied was if the changes in refractive index profile due to high stresses caused by tight radius bending would be large enough to affect the fiber performance. The tests showed that the 250 mum thick PMMA based sample fibers were able to survive the demanded 100,000 bends with temperature cycling without significantly increasing their attenuation. The fibers were also able to keep their performance until elongations close to their breaking point. The effect of changes in fiber refractive index profile was found to be insignificant compared to other bending related effects.
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