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On the Processing and Testing of FRP Composites Incorporating Fiber Optic Sensors

机译:关于加入光纤传感器FRP复合材料的加工和测试

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The use of the pultrusion process for the manufacture of fiber reinforced polymer (FRP) composites with embedded fiber optic sensors is discussed. The specific application is the use of smart composite reinforcements for strain monitoring in engineering structures. The Bragg Grating and Fabry Perot fiber optic sensors are embedded during the pultrusion of FRP rods and the process induced residual strains are evaluated using these sensors. The behaviour of optic sensors during pultrusion is assessed, and the effect of the embeddment of optical fibers and their surface coatings on the mechanical properties of the composite is investigated. Monitoring of the output of embedded fiber optic strain sensors during the pultrusion of composite rods gives a unique view of the formation of residual strains within the pultrusion die itself. To verify the operation of the optic sensors embedded in the smart pultruded tendons, mechanical tests were conducted and the output of the fiber optic sensors was compared to that of an extensometer during quasi-static and cyclic tensile tests.
机译:讨论了使用覆盖纤维增强聚合物(FRP)复合材料的拉挤抗熔过程,具有嵌入式光纤传感器。具体应用是在工程结构中使用智能复合增强物进行应变监测。布拉格光栅和法布里·珀罗光纤传感器嵌入在FRP棒的拉挤过程中,并且使用这些传感器评估工艺诱导的残留菌株。评估了光学传感器在拉挤成形期间的行为,研究了光纤的嵌入和它们的表面涂层对复合材料的力学性能的影响。在复合杆的拉挤浆期期间监测嵌入式光纤应变传感器的输出给出了拉挤成模内的残留菌株的形成的独特视图。为了验证嵌入在智能拉挤肌腱中的光学传感器的操作,进行机械测试,并将光学传感器的输出与延伸仪在准静态和环状拉伸试验期间进行比较。

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