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Detection of Crack Initiation and Growth Using Fiber Bragg Grating Sensors Embedded into Metal Structures through Ultrasonic Additive Manufacturing

机译:通过超声添加剂制造嵌入金属结构中的光纤布拉格光栅传感器的裂纹启动和生长的检测

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摘要

Structural health monitoring (SHM) is a rapidly growing field focused on detecting damage in complex systems before catastrophic failure occurs. Advanced sensor technologies are necessary to fully harness SHM in applications involving harsh or remote environments, life-critical systems, mass-production vehicles, robotic systems, and others. Fiber Bragg Grating (FBG) sensors are attractive for in-situ health monitoring due to their resistance to electromagnetic noise, ability to be multiplexed, and accurate real-time operation. Ultrasonic additive manufacturing (UAM) has been demonstrated for solid-state fabrication of 3D structures with embedded FBG sensors. In this paper, UAM-embedded FBG sensors are investigated with a focus on SHM applications. FBG sensors embedded in an aluminum matrix 3 mm from the initiation site are shown to resolve a minimum crack length of 0.286 ± 0.033 mm and track crack growth until near failure. Accurate crack detection is also demonstrated from FBGs placed 6 mm and 9 mm from the crack initiation site. Regular acrylate-coated FBG sensors are shown to repeatably work at temperatures up to 300 ∘ C once embedded with the UAM process.
机译:结构健康监测(SHM)是一种快速生长的领域,重点是在发生灾难性故障之前检测复杂系统中的损坏。在涉及苛刻或远程环境,生命关键的系统,大规模生产车辆,机器人系统和其他人的应用中,需要先进的传感器技术。光纤布拉格光栅(FBG)传感器由于它们对电磁噪声的抵抗力,多路复用能力和准确的实时操作而具有吸引力的健康监测。已经证明了超声波添加剂制造(UAM)用于用嵌入式FBG传感器的3D结构的固态制造。在本文中,研究了UAM嵌入式FBG传感器,重点是SHM应用。从起始位点嵌入铝基质中的FBG传感器显示出距起始位点的最小裂缝长度为0.286±0.033mm,轨道裂纹生长直至近乎发生故障。从裂纹启动部位放置6mm和9mm的FBG也证明了精确的裂纹检测。常规丙烯酸酯涂覆的FBG传感器被示出为在嵌入UAM工艺的温度下可在高达300℃的温度下工作。

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