材料科学
题字图形
光纤布拉格光栅
蓝宝石
磷
飞秒
光学
光电子学
激光器
光纤激光器
钛宝石激光器
光纤
纤维
保偏光纤
光纤传感器
波长
复合材料
物理
数学
几何学
作者
Dinesh Reddy Alla,Deva Prasaad Neelakandan,Farhan Mumtaz,Rex E. Gerald,Laura Bartlett,Ronald J. O’Malley,Jeffrey D. Smith,Jie Huang
标识
DOI:10.1109/tim.2023.3335530
摘要
This research reports a distributed fiber optic high-temperature sensing system tailored for applications in the steel industry and various other sectors. Recent advancements in optical sensor technology have led to the exploration of sapphire crystal fibers as a solution for sensing in harsh environments. Utilizing a femtosecond (fs) laser, cascaded fiber Bragg gratings (FBGs) were meticulously fabricated within a multimode sapphire optical fiber. These FBGs endowed the system with distributed sensing capabilities and underwent rigorous testing under extreme temperatures, reaching up to 1800 °C. The study delves into the investigation of the FBG reflection spectrum, facilitated by the development of a sophisticated multimode demodulation system, which contributed to the attainment of precise temperature measurements with a performance accuracy of 99.9%. Demonstrating exceptional thermal stability, the sapphire FBGs endured temperatures of 1600 °C for a sustained duration of 22 h. Furthermore, this article explores the application of distributed temperature sensing employing multiple sapphire FBGs, showcasing their utility in temperature measurements related to molten steel studies.
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