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Fatigue behavior of polyimide coated optical fibers at elevated temperatures

机译:升温下聚酰亚胺涂层光纤的疲劳行为

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As optical fiber is being used in much harsher environments than traditional telecommunications (e.g. distributed temperature sensing at elevated temperatures) understanding its mechanical properties at high temperatures is urgently needed. As a continuation of our previous work on high temperature strength of silica optical fiber, we report our results in fatigue behavior of polyimide coated silica optical fiber at 300°C in this paper. Fiber fatigue is the degradation in strength caused by a stress dependent chemical reaction between water vapor and the surface of the silica glass. In contrast to the published data on degradation in mechanical properties of silica optical fiber at elevated temperatures, our observations indicate a negligible decrease in strength along with unchanged, n-value, (fatigue resistant factor) at 300°C. To determine the n value, we tested tensile strength of the fiber using four different strain rates while the subject under test was at 300°C. The results indicate that the polyimide coating on the silica glass fiber continues to serve as an effective water vapor barrier at 300°C. These results will be compared with data available for room temperature performance of this silica/polyimide combination and possible failure mechanisms will be discussed.
机译:由于光纤在多个骚扰环境中,而不是传统的电信(例如,高温下的分布式温度感测)理解其在迫切需要高温下的机械性能。作为我们先前的硅光纤高温强度的延续,我们报告了我们在本文中300℃的聚酰亚胺涂层二氧化硅光纤的疲劳行为的结果。纤维疲劳是由水蒸气与二氧化硅玻璃表面之间的应力依赖性化学反应引起的强度的降解。与升高温度下二氧化硅光纤的机械性能的发布数据相比,我们的观察结果表明,在300℃下具有不变的N值(疲劳抗性因子)的强度降低。为了确定N值,我们使用四种不同的应变速率测试纤维的拉伸强度,而被测受试者在300℃下。结果表明,二氧化硅玻璃纤维上的聚酰亚胺涂层继续用作300℃的有效水蒸气屏障。将这些结果与可用于室温性能的可用于该二氧化硅/聚酰亚胺组合的数据进行比较,并且将讨论可能的失效机制。

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