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High-temperature all-fiber non-destructive multi-parameter sensing system with consistent performance

机译:高温全纤维无损多参数传感系统,具有一致的性能

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摘要

A high-temperature all-fiber non-destructive multi-parameter sensing system is developed. The system can operate consistently in a wide range of temperature changes by specially designed active signal generation and detection units. It is capable of monitoring temperature up to 600 degrees C and cracks on metal pipes with an acoustic wave generation unit and an acoustic detection unit. A gold-coated multi-mode fiber is used to deliver a laser pulse for acoustic excitation while minimizing parasitic acoustic signals at high temperature. An in-fiber Fabry-Perot fiber Bragg grating (FP-FBG) is fabricated in another single-mode fiber and bonded to the test object for acoustic detection. The FP-FBG avoids strain redistribution inside the bonder at high temperature to ensure consistent operation. The feasibility of the system for temperature monitoring and crack detection in real-world applications is also demonstrated on an industry-standard P91 pipe. (C) 2020 Optical Society of America
机译:开发了高温全纤维无损多参数传感系统。 通过专门设计的主动信号产生和检测单元,该系统可以在各种温度变化中始终运行。 它能够监测高达600℃的温度,并在具有声波产生单元和声学检测单元的金属管上裂缝。 镀金多模光纤用于为声学激发提供激光脉冲,同时在高温下最小化寄生声信号。 在另一个单模纤维中制造了纤维纤维法布里 - 珀罗光纤布拉格(FP-FBG)并将其粘合到用于声学检测的测试对象。 FP-FBG在高温下避免在发电机内的应变再分配,以确保一致的操作。 在行业标准P91管道上还证明了在现实世界应用中温度监测和裂纹检测系统的可行性。 (c)2020美国光学学会

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