材料科学
磁致伸缩
信号(编程语言)
执行机构
传感器
分层(地质)
电磁线圈
结构健康监测
纤维增强塑料
复合材料
失效模式及影响分析
电感
声学
结构工程
计算机科学
电气工程
磁场
工程类
古生物学
物理
量子力学
电压
人工智能
生物
俯冲
构造学
程序设计语言
作者
Jamin Daniel Selvakumar Vincent,Zhaoyuan Leong,Nicola Morley
标识
DOI:10.1016/j.sna.2023.114888
摘要
Structural health monitoring (SHM) of carbon fibre reinforced polymers (CFRP) provides a valuable way to assess the condition of these materials, which possess desirable traits, but exhibit little elastic failure. Further complications arise due to their multi component nature, which means they can fail in a variety of ways. High-fidelity magnetostrictive SHM technology exhibits higher cost when utilising top-end materials that contain rare-earth elements. At the expense of fidelity, cost can be reduced by using Fe-based ribbons and cheap transducers. This reduction in accuracy can be overcome by coupling a detection array with the development of specific detection schemes for each failure type to reduce signal complexity. In this work, we investigate the failure of CFRP coupons in Mode 1 and 2 failure, using FeSiB ribbons as the actuator either bonded between the CFRP ply or co-cured on the surface. During the measurement, a set of 4 pancake coils are used to measure the change in inductance, as the CFRP fails, thus demonstrating that this magnetostrictive-coil set-up can be used to measure cracks forming and propagating within the CFRP, hence it is a promising SHM system. For the first time, it is demonstrated that there is a correlation between the induction signal and the elastic energy stored within the CFRP coupon.
科研通智能强力驱动
Strongly Powered by AbleSci AI