Impact of embedding techniques in FBG sensors

J. Hao, G. Peng, C. Liaw, Wee Chye Ho, Lihao Chen, S. Takahashi, J. Ng, Xiaoqun Zhou, Chao Lu
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引用次数: 1

Abstract

Embedded fiber Bragg gratings (FBGs) have been fabricated for use as pressure sensors to measure forces applied in the direction perpendicular to the fiber axis. The 1 cm length acrylate-coated FBGs were embedded into fiber-reinforced composites in two orientations in separate samples to test the properties of pressure sensor in each case. In samples where the FBG is embedded in parallel to the carbon fiber, the reflected spectrum remains a single wavelength peak as expected from an FBG. However, for samples where the FBG is placed at 90deg to the carbon fiber, peak split was observed. Scanning electron microscopy (SEM) of the embedded acrylate-coated fiber shows that the FBG embedded parallel to the carbon fiber is wrapped completely while the FBG embedded at 90deg to the carbon fiber is difficult to be wrapped well, suggesting the existence of longitudinal inhomogeneity
嵌入技术对光纤光栅传感器的影响
嵌入式光纤布拉格光栅(fbg)已被制成压力传感器,用于测量垂直于光纤轴方向施加的力。在不同的样品中,将长度为1 cm的丙烯酸酯涂层fbg以两种方向嵌入到纤维增强复合材料中,以测试每种情况下压力传感器的性能。在FBG与碳纤维平行嵌入的样品中,反射光谱保持单一波长峰值,正如FBG所期望的那样。然而,对于光纤光栅与碳纤维呈90度的样品,观察到峰值分裂。对丙烯酸酯包覆光纤的扫描电镜(SEM)分析表明,与碳纤维平行埋入的光纤光栅被完全包裹,而与碳纤维成90度埋入的光纤光栅很难被很好地包裹,表明光纤存在纵向不均匀性
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