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Study of thermo-mechanical characteristics of polymer composite materials with embedded optical fibre

机译:嵌入光纤的聚合物复合材料的热机械特性研究

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AbstractThe purpose of the paper consists in presenting the simulation results obtained in analysing a major issue concerning the fabrication of smart composite materials (SCM) using fibre optic sensors, more exactly Long Period Grating Fibre Sensors (LPGFS) for the necessary feedback at environment inputs such as mechanical stress, strain, temperature or pressure. There is an increasing interest SCM regarding their various medical care, security, industry and aerospace applications. The major analysed issue of SCM using LPGFS fabrication and exploitation is how to investigate the mechanical characteristics of the optical fibre with grating (essential for its sensing capabilities) after embedding into the polymer matrix of a composite. One task to be accomplished by the performed analysis is to get accurate information about mechanical loads such as elongation, torsion and/or bending induced in the LPGFS by the composite polymer matrix in which it is embedded. For performing the proposed analysis of thermo-mechanical characteristics of composite polymer matrix having a LPGFS embedded inside it a simple FEM technique is used. The polymer and optical fibre thermal and mechanical characteristics are taken into account. The analysis is performed in order to design and manufacture smart polymer composite materials using fibre optics sensors.
机译: 摘要 本文的目的在于介绍仿真结果,该仿真结果是通过分析与使用智能复合材料(SCM)的制造有关的主要问题而获得的。光纤传感器,更确切地说是长周期光栅光纤传感器(LPGFS),用于在环境输入(例如机械应力,应变,温度或压力)下提供必要的反馈。 SCM对它们的各种医疗,安全,工业和航空航天应用越来越感兴趣。使用LPGFS进行制造和开发的SCM的主要分析问题是,如何在将其嵌入复合材料的聚合物基体中之后研究带有光栅的光纤的机械特性(对其传感能力至关重要)。通过执行的分析要完成的一项任务是获得有关机械载荷的准确信息,例如嵌入其中的复合聚合物基质在LPGFS中引起的伸长,扭转和/或弯曲。为了进行建议的分析,其内部嵌有LPGFS的复合聚合物基体的热机械特性采用了一种简单的有限元技术。考虑到聚合物和光纤的热和机械特性。进行分析是为了使用光纤传感器设计和制造智能聚合物复合材料。

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