Flexible Sensors for Structural Health Monitoring of Composites: Advances, Challenges, and Perspectives
XING Fei1, LI Haopeng1, LI Wenqian1, XU Lili1, QIU Quanshui1, ZHANG Haopeng2
1. Beijing Institute of Space Mechanics and Electricity, Beijing 100076, China;
2. Beijing Aerospace Hezhong Science and Technology Co. Ltd., Beijing 102600, China
树脂基复合材料在航空航天等领域的众多典型承力结构、非承力结构中广泛应用,在结构功能一体化背景下,传统离线监测手段已无法满足复合材料智能化的需求。随着复合材料的结构健康监测(Structural health monitoring,SHM)不断发展,以碳纳米管、石墨烯和MXene 等导电粒子为传感单元的柔性传感器为复合材料的损伤 早期识别、服役状态预警和智能诊断开辟了新思路。本文主要针对柔性传感器的结构健康监测技术进行系统综述,重点介绍柔性传感器的设计思路、关键技术、机理机制和应用进展,并对其未来在航空航天领域的应用进行了展望。
Resin matrix composites are widely utilized in a variety of typical load-bearing and non-load-bearing constructions in fields such as aeronautics and aerospace. With structural and functional integration, traditional off-line monitoring approaches can no longer match composites’ sophisticated expectations. With the ongoing development of structural health monitoring (SHM) of composite materials, flexible sensors primarily composed of conductive particles such as carbon nanotubes, graphene, and MXene have opened up new possibilities for early damage detection, early warning of service status, and intelligent diagnosis of composite materials. This paper primarily undertakes a systematic evaluation of the structural health monitoring technology of flexible sensors, focusing on introducing the design ideas, essential technologies, mechanism mechanisms, and application advancements of flexible sensors, and looking ahead to their future applications.