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Embedded fiber Bragg grating sensor for internal strain measurements in polymeric materials

机译:嵌入式光纤布拉格光栅传感器,用于测量聚合物材料中的内部应变

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摘要

In this paper, the essential aspects of fiber Bragg grating (FBG) sensors as a tool for internal strain measurements are discussed. The merits and the limitations are mentioned and experimental results of internal elastic strains measurements are presented in various configurations. These data are used to deduce: (a) bridging forces in a model composite, (b) strains through the thickness of a laminated composite, and (c) residual stresses in an epoxy cylinder. The experimental results are confronted with numerical models of the actual configuration and pertinent theoretical models. The present studies demonstrate that internal strain measurements using embedded FBG sensors, accompanied by appropriate modeling, can be used to characterize deformation and fracture behavior of polymeric materials at various scales.
机译:在本文中,讨论了光纤布拉格光栅(FBG)传感器作为内部应变测量工具的基本方面。提到了优点和局限性,并以各种配置显示了内部弹性应变测量的实验结果。这些数据可用于推断:(a)模型复合材料中的桥接力,(b)穿过层压复合材料厚度的应变,以及(c)环氧圆柱体中的残余应力。实验结果面临着实际配置的数值模型和相关的理论模型。本研究表明,使用嵌入式FBG传感器进行内部应变测量以及适当的建模,可用于表征各种规模的聚合物材料的变形和断裂行为。

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