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考虑界面应变传递机制的内埋FBGs环氧树脂固化过程模拟

LEI Weihua,HU Haixiao,CAO Dongfeng, XIAO Lei, TIAN Yizhou,LI Shuxin, WANG Jingnan

Acta Materiae Compositae Sinica(2023)

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Abstract
采用实验与数值分析相结合的手段对光纤布拉格光栅传感器(Fiber Bragg grating sensor,FBGs)与基体间应变传递机制这一固化监测的基础问题进行了探索.首先,对树脂的固化动力学、热膨胀、化学收缩和玻璃化转变等物化变化进行了表征,然后,借助热电偶和FBGs开展了环氧树脂固化过程的温度和应变监测实验,最后,基于固化过程热-化-力多场耦合数值分析方法开展了固化过程模拟.通过对比纯树脂模型、界面采用绑定约束的含FBGs模型和界面采用内聚力行为的含FBSs模型分析结果,对界面传递机制进行了探讨.结果表明:固化前期界面处存在的剪滞效应和界面滑移行为导致FBGs监测应变相较树脂本体应变明显偏小,其中剪滞效应占主导作用.采用内聚力行为可以较好地描述固化过程界面应变传递机制,数值预测结果与实验值误差较小.
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Key words
cure monitoring,interface,strain transfer,fiber Bragg grating sensor(FBGs),numerical analysis
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