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Strain development in curing epoxy resin and glass fibre/epoxy composites monitored by fibre Bragg grating sensors in birefringent optical fibre

机译:用双折射光纤中的光纤布拉格光栅传感器监测固化环氧树脂和玻璃纤维/环氧复合材料的应变

摘要

Fibre Bragg gratings (FBGs) fabricated in linearly birefringent fibres were embedded in glass fibre/epoxy composites and in the corresponding unreinforced resin to monitor the effective transverse strain development during the cure process. The optical fibres containing the FBG sensors were aligned either normal or parallel to the reinforcement fibres in unidirectional glass fibre/epoxy prepregs. The chemical cure kinetics of the epoxy resin system used were studied using differential scanning calorimetry, in order to investigate the correlation between the strain monitoring results and the evolution of the curing reaction. A non-parametric cure kinetics model was developed and validated for this purpose. The effective transverse strain measured by the FBGs demonstrated high sensitivity to the degree of cure as a result of the densification of the resin caused by the curing reaction. The effective compressive transverse strain developed during the reaction, and thus the corresponding sensitivity to chemical changes, was higher in the case of the sensing fibre aligned normal to the reinforcement fibres than in the case of the sensor fibre parallel to the reinforcement fibres. Small but measurable sensitivity to cure induced changes was observed in the case of the unreinforced resin.
机译:将线性双折射纤维制成的光纤布拉格光栅(FBG)嵌入玻璃纤维/环氧树脂复合材料以及相应的非增强树脂中,以监控固化过程中有效的横向应变。包含FBG传感器的光纤在单向玻璃纤维/环氧树脂预浸料中与增强纤维垂直或平行排列。为了研究应变监测结果与固化反应演变之间的关系,使用差示扫描量热法研究了所用环氧树脂体系的化学固化动力学。为此,开发并验证了非参数固化动力学模型。由于固化反应引起的树脂致密化,通过FBG测量的有效横向应变显示出对固化度的高度敏感性。在反应过程中产生的有效压缩横向应变以及相应的对化学变化的敏感性,在传感纤维垂直于增强纤维排列的情况下要比传感器纤维平行于增强纤维的情况要高。在未增强树脂的情况下,观察到对固化引起的变化的敏感性很小但可测量。

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