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In-situ monitoring of curing and ageing effects in FRP plates using embedded FBG sensors

机译:使用嵌入式FBG传感器现场监测FRP板中的固化和老化效果

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In recent years, fiber reinforced polymer (FRP) composites have been widely applied in civil engineering for retrofitting or renewal of existing structures. Since FRP composite may degrade when exposed to severe outdoor environments, a serious concern has been raised on its long term durability. In the present study, fiber Bragg grating (FBG) sensors were embedded in glass-, carbon- and basalt-fiber reinforced epoxy based FRP plates with wet lay-up technology, to in-situ monitor the stain changes in FRPs during the curing, and water immersion and freeze-thaw ageing processes. The study demonstrates that the curing of epoxy resin brings in a slight tension strain (e.g., 10 ~ 30 us) along the fiber direction and a high contraction (e.g., ~1100με) in the direction perpendicular to the fibers, mainly due to the resin shrinkage. The cured FRP strips were then subjected to distilled water immersion at 80°C and freeze-thaw cycles from -30°C to 30°C. Remarkable strain changes of FRPs due to the variation of the temperatures during freeze-thaw cycles indicate the potential property degradation from fatigue. The maximum strain change is dependent on the fiber types and directions to the fiber. Based on the monitored strain values with temperature change and water uptake content, CTE (coefficient of thermal expansion) and CME (coefficient of moisture expansion) are exactly determined for the FRPs.
机译:近年来,纤维增强聚合物(FRP)复合材料已广泛应用于土木工程中,以对现有结构进行翻新或更新。由于FRP复合材料在暴露于严酷的户外环境时可能会降解,因此人们对其长期耐久性提出了严重的关注。在本研究中,光纤布拉格光栅(FBG)传感器通过湿法铺层技术嵌入到玻璃纤维,碳纤维和玄武岩纤维增强的环氧树脂基FRP板中,以现场监测固化过程中FRP的色斑变化,以及水浸和冻融老化过程。研究表明,环氧树脂的固化沿纤维方向会产生轻微的拉伸应变(例如10〜30 us),而在垂直于纤维方向上会产生高收缩(例如〜1100με),这主要是由于树脂引起的收缩。然后将固化的FRP条带在80°C的蒸馏水中浸泡,并在-30°C至30°C的温度下进行冻融循环。由于冻融循环过程中温度的变化,FRP的明显应变变化表明疲劳可能导致性能下降。最大应变变化取决于光纤类型和到光纤的方向。根据监测到的随温度变化和吸水率变化的应变值,可以精确地确定FRP的CTE(热膨胀系数)和CME(水分膨胀系数)。

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