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Fiber-Optic Sensor-Based Remote Acoustic Emission Measurement in a 1000 °C Environment

机译:1000°C环境下基于光纤传感器的远程声发射测量

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摘要

Recently, the authors have proposed a remote acoustic emission (AE) measurement configuration using a sensitive fiber-optic Bragg grating (FBG) sensor. In the configuration, the FBG sensor was remotely bonded on a plate, and an optical fiber was used as the waveguide to propagate AE waves from the adhesive point to the sensor. The previous work (Yu et al., Smart Materials and Structures 25 (10), 105,033 (2016)) has clarified the sensing principle behind the special remote measurement system that enables accurate remote sensing of AE signals. Since the silica-glass optical fibers have a high heat-resistance exceeding 1000 °C, this work presents a preliminary high-temperature AE detection method by using the optical fiber-based ultrasonic waveguide to propagate the AE from a high-temperature environment to a room-temperature environment, in which the FBG sensor could function as the receiver of the guided wave. As a result, the novel measurement configuration successfully achieved highly sensitive and stable AE detection in an alumina plate at elevated temperatures in the 100 °C to 1000 °C range. Due to its good performance, this detection method will be potentially useful for the non-destructive testing that can be performed in high-temperature environments to evaluate the microscopic damage in heat-resistant materials.
机译:最近,作者提出了使用灵敏的光纤布拉格光栅(FBG)传感器的远程声发射(AE)测量配置。在该配置中,将FBG传感器远程粘合在板上,并使用光纤作为波导将AE波从粘合点传播到传感器。之前的工作(Yu等人,Smart Materials and Structures 25(10),105,033(2016))阐明了特殊遥测系统背后的感测原理,该系统能够对AE信号进行精确的遥测。由于石英玻璃光纤具有超过1000°C的高耐热性,因此该工作提出了一种初步的高温AE检测方法,该方法是使用基于光纤的超声波波导将AE从高温环境传播到周围环境。室温环境中,FBG传感器可以用作导波的接收器。结果,新颖的测量配置成功地在100°C至1000°C的高温条件下在氧化铝板上实现了高度灵敏且稳定的AE检测。由于其良好的性能,这种检测方法对于可在高温环境下进行的非破坏性测试可能很有用,以评估耐热材料的微观损伤。

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