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Optical Fiber Embedded in Epoxy Glass Unidirectional Fiber Composite System

机译:嵌入环氧玻璃单向纤维复合系统的光纤

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摘要

We aimed to embed silica optical fibers in composites (epoxy vinyl ester matrix reinforced with E-glass unidirectional fibers in mass fraction of 60%) in order to further monitor the robustness of civil engineering structures (such as bridges). A simple system was implemented using two different silica optical fibers (F1—double coating of 172 μm diameter and F2—single coating of 101.8 μm diameter respectively). The optical fibers were dynamically tensile tested and Weibull plots were traced. Interfacial adhesion stress was determined using pull-out test and stress values were correlated to fracture mechanisms based on SEM observations. In the case of the optical fiber (OF) (F1)/resin system and OF (F1)/composite system, poor adhesion was reported that may be correlated to interface fracture at silica core level. Relevant applicable results were determined for OF (F2)/composite system.
机译:我们的目标是将二氧化硅光纤嵌入复合材料(质量分数为60%的E-玻璃单向纤维增强的环氧乙烯基酯基体)中,以便进一步监控土木工程结构(例如桥梁)的坚固性。使用两个不同的石英光纤(F1-直径172μm的双层涂层和F2-直径101.8μm的单涂层)实现了一个简单的系统。对光纤进行了动态拉伸测试,并绘制了威布尔图。使用拉拔试验确定界面粘附应力,并基于SEM观察将应力值与断裂机理相关联。在光纤(OF)(F1)/树脂系统和OF(F1)/复合系统的情况下,据报道粘合性差,这可能与二氧化硅芯层的界面断裂有关。确定了OF(F2)/复合系统的相关适用结果。

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