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Molecular alignment relaxation in polymer optical fibers for sensing applications

机译:用于传感应用的聚合物光纤中的分子排列弛豫

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A systematic study of annealing behavior of drawn PMMA fibers was performed. Annealing dynamics were investigated under different environmental conditions by fiber longitudinal shrinkage monitoring. The shrinkage process was found to follow a stretched exponential decay function revealing the heterogeneous nature of the underlying molecular dynamics. The complex dependence of the fiber shrinkage on initial degree of molecular alignment in the fiber, annealing time and temperature was investigated and interpreted. Moreover, humidity was shown to have a profound effect on the annealing process, which was not recognized previously. Annealing was also shown to have considerable effect on the fiber mechanical properties associated with the relaxation of molecular alignment in the fiber. The consequences of fiber annealing for the climatic stability of certain polymer optical fiber-based sensors are discussed, emphasizing the importance of fiber controlled pre-annealing with respect to the foreseeable operating conditions. (C) 2016 Elsevier Inc. All rights reserved.
机译:对拉伸的PMMA纤维的退火行为进行了系统的研究。通过纤维纵向收缩监测研究了在不同环境条件下的退火动力学。发现收缩过程遵循拉伸的指数衰减函数,揭示了潜在分子动力学的异质性。研究并解释了纤维收缩率对纤维中分子排列的初始程度,退火时间和温度的复杂依赖性。此外,湿度被证明对退火过程有深远的影响,这是以前没有发现的。还显示了退火对与放松纤维中的分子排列有关的纤维机械性能有相当大的影响。讨论了纤维退火对某些基于聚合物光纤的传感器的气候稳定性的影响,强调了在可预见的工作条件下纤维控制的预退火的重要性。 (C)2016 Elsevier Inc.保留所有权利。

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