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In-situ simultaneous strain and temperature measurement of adaptive composite materials using a fiber Bragg grating based sensor

机译:使用基于光纤布拉格光栅的传感器对自适应复合材料进行原位同时应变和温度测量

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摘要

An optical fiber sensor to simultaneously measure strain and temperature was designed and embedded into an adaptive composite laminate which exhibits a shape change upon thermal activation. The sensor is formed by two fiber Bragg gratings, which are written in optical fibers with different core dopants. The two gratings were spliced close to each other and a sensing element resulted with Bragg gratings of similar strain sensitivity but different response to temperature. This is due to the dependence of the fiber thermo-optic coefficient on core dopants and relative concentrations. The sensor was tested on an adaptive composite laminate made of unidirectional Kevlar-epoxy pre-preg plies. Several 150μm diameter pre-strained NiTiCu shape memory alloy wires were embedded in the composite laminate together with one fiber sensor. Simultaneous monitoring of strain and temperature during the curing process and activation in an oven was demonstrated.
机译:设计了一种同时测量应变和温度的光纤传感器,并将其嵌入自适应复合材料层压板中,该层压板在热激活后会发生形状变化。该传感器由两个光纤布拉格光栅形成,它们被写入具有不同纤芯掺杂剂的光纤中。两个光栅彼此靠近地拼接在一起,并且传感元件由应变灵敏度相似但对温度的响应不同的布拉格光栅产生。这是由于光纤热光系数对纤芯掺杂物和相对浓度的依赖性。该传感器在由单向Kevlar-环氧树脂预浸料制成的自适应复合层压板上进行了测试。将几根直径为150μm的预应变NiTiCu形状记忆合金线与一个光纤传感器一起嵌入复合层板中。演示了同时监控固化过程中的应变和温度以及在烤箱中激活的情况。

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