Infrared and Laser Engineering, Volume. 53, Issue 6, 20240080(2024)
Sensing characteristics of low-loss metallized fiber Bragg grating by ultrasonic welding
[3] Bo PANG, Zheng ZHAO, Yuege ZHOU et al. Study on the temperature sensitivity of FBG under the condition of temperature alternation. Missiles and Space Vehicles, 88-92(2023).
[4] Shijun ZOU, Xueting WANG, Xinyue DU. Application of fiber Bragg grating (FBG) sensor in flight test strain measurement. Automation Application, 64, 201-203(2023).
[5] Hong LI, Lianqing ZHU, Feng LIU et al. Strain transfer analysis and experimental research of surface-bonded bare FBG. Chinese Journal of Scientific Instrument, 35, 1744-1750(2014).
[6] [6] SCHOMERJ J, ADAM J H, DAPINOEHR M J, et al. acterization of embedded fiber optic strain senss into metallic structures via ultrasonic additive manufacturing [C]Conference on Senss Smart Structures Technologies f Civil, Mechanical, Aerospace Systems, 2016.
[7] Shihua LIU, Tao CHEN, Ruiya LI et al. Research on the influence of adhesive stick effect on the performance of substrate FBG temperature sensor. Journal of Optoelectronics·Laser, 27, 692-698(2016).
[8] Shizhu TIAN, Guoqing ZHANG, Dapeng WANG. Study on strain transfer mechanism of surface fiber bragg grating sensor. Chinese Journal of Laser, 41, 0805005(2014).
[9] Cuicui DU, Deren KONG, Chundong XU. Design of metallic packaged fiber Bragg grating sensor and its strain transfer experiment. Journal of Hunan University (Natural Sciences), 50, 9-20(2023).
[10] Mingyao LIU, Dongliang JI, Shuang XIAO et al. Effect of adhesive viscoelasticity on strain transfer mechanism of bonded FBG. Optics and Precision Engineering, 24, 1307-1318(2016).
[11] Chuhong WANG, Weimin CHEN, Zhifang FU et al. Characterisitics of automatic bonded fiber Bragg grating with metal materials. Acta Photonica Sinica, 45, 69-75(2016).
[12] S G KANG, J SHIN. Numerical and experimental study on melt-pool heat transfer and weld characteristics in dual-mode fiber laser welding of aluminum alloy. Optics & Laser Technology, 158, 108805(2023).
[13] I MCKEEMAN, G FUSIEK, M PERRY et al. First-time demonstration of measuring concrete prestress levels with metal packaged fibre optic sensors. Smart Materials & Structures, 25, 095051(2016).
[15] Hong YANG, Yulong LI, Yangping DONG et al. FBG ultrasonic welding package and its bending sensing characteristics. Transactions of the China Welding Institution, 40, 69-75,164(2019).
[16] Y WANG, Y TU, S TU. A study of tensile and fatigue loading effects on the performance of metal-packaged FBG strain sensor developed for cryogenic applications. IEEE Sensors Journal, 22, 11763-11774(2022).
[17] D ALASIA, S PISSADAKIS, V MADZHAROV. Thermal characterisation of optical fibre Bragg gratings welded by fibre lasers. Applied Surface Science, 254, 7441-7444(2008).
[18] Y ZHANG, L ZHU, F LUO. Fabrication and characterization of metal-packaged fiber Bragg grating sensor by one-step ultrasonic welding. Optical Engineering, 55, 067103(2016).
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Jing TIAN, Lianqing ZHU, Jifeng YAO, Yanming SONG, Yumin ZHANG. Sensing characteristics of low-loss metallized fiber Bragg grating by ultrasonic welding[J]. Infrared and Laser Engineering, 2024, 53(6): 20240080
Category: Optical communication and sensing
Received: Feb. 28, 2024
Accepted: Apr. 18, 2024
Published Online: Jul. 31, 2024
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