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Simultaneous monitoring of strain and temperature during and after cure of unsymmetric composite laminate using fibre-optic sensors

机译:使用光纤传感器同时监控不对称复合材料层压板固化期间和之后的应变和温度

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摘要

In this paper, we present a simultaneous measurement of strain and temperature during and after cure of unsymmetric cross-ply composite laminate using fibre-optic sensors. Fibre Bragg grating/extrinsic Fabry-Perot interferometric (FBG/EFPI) hybrid sensors are used to measure those measurands. The characteristic matrix of the sensor is derived analytically and measurements can be done without sensor calibration experiments. A wavelength-swept fibre laser is utilized as a light source. Two FBG/EFPI hybrid sensors are embedded in a graphite/epoxy unsymmetric cross-ply composite laminate in different directions and different locations. We perform the real-time measurement of fabrication strains and temperatures at two points within the composite laminate during the cure process in an autoclave. Also, the thermal strains and temperatures of the fabricated unsymmetric laminate are measured afterward in a thermal chamber. Through these experiments, FBG/EFPI sensors are proven to be an efficient choice for smart monitoring of composite structures.
机译:在本文中,我们介绍了使用光纤传感器同时测量不对称交叉多层复合层压板固化期间和之后的应变和温度。光纤布拉格光栅/外部Fabry-Perot干涉(FBG / EFPI)混合传感器用于测量这些被测物。传感器的特征矩阵通过分析得出,无需传感器校准实验即可进行测量。波长扫描光纤激光器被用作光源。两个FBG / EFPI混合传感器以不同的方向和不同的位置嵌入石墨/环氧不对称的交叉层压复合材料层压板中。我们在高压釜的固化过程中,对复合层压板内两个点的制造应变和温度进行实时测量。而且,随后在热室内测量所制造的不对称层压体的热应变和温度。通过这些实验,FBG / EFPI传感器被证明是智能监控复合结构的有效选择。

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