材料科学
垫片
管道运输
结构健康监测
建筑工程
法律工程学
纳米技术
系统工程
机械工程
复合材料
工程类
作者
Yunqi Cao,Haozhen Chi,Ziying Zhu,Shuyu Fan,Yicheng Zhang,Yongkui Tang,Dibo Hou
标识
DOI:10.1002/adfm.202412634
摘要
Abstract In advancing “smart city” initiatives, multi‐functional sensing devices are crucial for the structural health monitoring (SHM) of key infrastructures. This study presents a self‐sensing sealing electronic gasket (e‐gasket) featuring multi‐modal interdigitated‐electrode‐based sensors for underground pipeline damage assessments, via simultaneously detected distribution information of contact pressure and relative humidity (RH). Detecting performance is enhanced through functional surface coatings and optimized pore size of the porous foam layer. An equivalent decoupling model for precise detection is established by analyzing the electrical responses of capacitance and impedance, and a rough estimation method relying on relative response is investigated to reduce the energy consumption and enhance monitoring efficiency. It demonstrates excellent multi‐modal sensing capabilities, repeatability, and stability over the long term. Experimental results verify the effectiveness in condition detection, fault classification, damage severity assessment, and early warning functions of the e‐gasket, enabling comprehensive SHM.
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