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Transverse mechanical stress and optical birefringence induced into single- mode optical fibre embedded in a smart polymer composite material

机译:嵌入智能聚合物复合材料中的单模光纤中引起的横向机械应力和光学双折射

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摘要

Optical birefringence effects induced by transverse mechanical stress into a Long Period Grating Fibre Sensor fabricated into a single mode optical fibre embedded into the polymer matrix of a smart composite material are investigated by developing a simulation/design software toolbox dedicated to analysing important optomechanical characteristics of the smart material. The sensor is operated as the smart composite material feedback loop which provides the input signal for automation systems and/or for smart material monitoring. There are analysed the birefringence effects induced into the single mode optical fibre bare constituent fused silica and into its grating. The simulation results are compared with experimental ones reported in literature and a good agreement is observed. The paper is pointing to an improved simulation/design method of smart composite polymer materials and their applications in various fields such as aeronautics, industry, medicine and defence.
机译:通过开发专用于分析光纤的重要光机械特性的仿真/设计软件工具箱,研究了由横向机械应力引入长周期光栅光纤传感器中的光学双折射效应,该传感器制造为嵌入到智能复合材料的聚合物基质中的单模光纤。聪明的材料。传感器作为智能复合材料反馈回路运行,为自动化系统和/或智能材料监控提供输入信号。分析了在单模光纤裸成分熔融石英及其光栅中引起的双折射效应。将仿真结果与文献报道的实验结果进行了比较,观察到了很好的一致性。本文指出了一种改进的智能复合聚合物材料的仿真/设计方法及其在航空,工业,医学和国防等各个领域的应用。

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