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Novel mechanical fiber-optic sensors based on long-period fiber gratings written by high-frequency CO{sub}2 laser pulses

机译:基于高频CO {SUB} 2激光脉冲写入的长期光纤光栅的新型机械光纤传感器

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In this paper, we report novel long-period fiber gratings (LPFGs) fabricated by using a new writing method, which is mainly based on the thermal shock effect of focused high-frequency C0{sub}2 laser pulses at several kHz. A number of unique characteristics of such a LPFG, such as bend, torsion and transverse-load, et al, are observed by experiment, for the first time, to our knowledge. Based on these unique characteristics, a novel bend-insensitive LPFG sensor that could solve the problem of cross-sensitivity between bend and other measurands, a novel torsion sensor that can realize absolute measurement of twist rate and a load sensor that can achieve simultaneous measurement of transverse load and temperature using a single LPFG element are demonstrated. These unique features are mainly due to the asymmetrical distribution of the refractive index on the cross-section of the LPFG induced by highfrequency C0{sub}2 laser pulses.
机译:在本文中,我们通过使用新的写入方法报告制造的新型长期光纤光栅(LPFG),这主要基于聚焦高频C0} 2激光脉冲在几kHz的热冲击效果。通过实验,首次观察到这种LPFG的许多独特特征,例如弯曲,扭转和横向负荷,等,我们的知识。基于这些独特的特性,一种新型弯曲不敏感的LPFG传感器,可以解决弯曲和其他测量之间的交叉敏感性问题,这是一种新型扭转传感器,可以实现扭转速率的绝对测量和可以实现同时测量的载荷传感器证明了使用单个LPFG元件的横向载荷和温度。这些独特的特征主要是由于高频C0 {Sub} 2激光脉冲引起的LPFG横截面上的折射率的不对称分布。

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