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Design of Fiber Bragg Grating Acoustic Sensor for Structural Health Monitoring of Nuclear Power Plant

机译:核电厂结构健康监测光纤布拉格光栅声学传感器的设计

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Nuclear power plant (NPP) is commonly categorized as a harsh environment that gives rise to age-related degradation on the structures of plant and eventually leads to radiation leakage that threatens human. Integrated structural health monitoring (ISHM) technology is a strong candidate for NPP accidents. The emergence of optical fiber technology into SHM system for NPP was greatly interested by researchers, and also prior research works have shown that the fiber Bragg grating (FBG) was able to retain its reflectivity under radiation exposure. In this paper, a metal-coated fiber was newly used to develop a FBG acoustic sensor for ISHM of NPP. The 7 mm length of aluminum, copper/carbon coatings were successfully removed with sodium hydroxide and nitric acid solutions. A 5 mm FBG was successfully inscribed in the silica core through the 7 mm long coating-removed silica section of copper/carbon-coated fiber and the initial reflectivity was 71%. Then, the FBG acoustic sensor was developed in one-end-free FBG configuration on the stainless steel vessel using a high temperature metallic adhesive. The reflective power of the sensor was stabilized at 345°C during the high temperature elevation cyclic process. The FBG acoustic sensor showed good response to the acousto-ultrasonic waves during pencil-lead breaking and laser ultrasonics tests. The high temperature FBG acoustic sensor written in the cost-effective metal/carbon is feasible to be used for ISHM of the NPP.
机译:核电站(NPP)通常被归类为恶劣的环境,这引起了植物结构的年龄相关的降解,最终导致威胁人类的辐射泄漏。综合结构健康监测(ISHM)技术是NPP事故的强大候选人。光纤技术的出现进入NPP的SHM系统对研究人员来说非常感兴趣,并且在先前的研究工作表明,光纤布拉格光栅(FBG)能够在辐射暴露下保持其反射率。在本文中,新用于开发用于NPP的ISHM的FBG声学传感器的金属涂覆的纤维。用氢氧化钠和硝酸溶液成功除去7毫米铝,铜/碳涂层。通过铜/碳涂覆纤维的7mm长的涂层除去二氧化硅部分成功刻在二氧化硅芯中,将5mM FBG成功刻。初始反射率为71%。然后,使用高温金属粘合剂在不锈钢容器上以一端的FBG配置在不锈钢容器上开发FBG声学传感器。在高温升高环循环过程中,在345℃下,传感器的反射功率稳定。 FBG声学传感器在铅笔铅断裂和激光超声波测试期间对声学超声波的良好反应。在经济高效的金属/碳中写的高温FBG声学传感器可用于NPP的ISHM。

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