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混合与先进结构的无损检测与评估:方法、应用及新兴趋势的全面综述

Non-Destructive Testing and Evaluation of Hybrid and Advanced Structures: A Comprehensive Review of Methods, Applications, and Emerging Trends.

作者信息

Abdollahi-Mamoudan Farima, Ibarra-Castanedo Clemente, Maldague Xavier P V

机构信息

Department of Electrical and Computer Engineering, Université Laval, 1065 Avenue de la Médecine, Québec, QC G1V 0A6, Canada.

出版信息

Sensors (Basel). 2025 Jun 10;25(12):3635. doi: 10.3390/s25123635.

Abstract

Non-destructive testing (NDT) and non-destructive evaluation (NDE) are essential tools for ensuring the structural integrity, safety, and reliability of critical systems across the aerospace, civil infrastructure, energy, and advanced manufacturing sectors. As engineered materials evolve into increasingly complex architectures such as fiber-reinforced polymers, fiber-metal laminates, sandwich composites, and functionally graded materials, traditional NDT techniques face growing limitations in sensitivity, adaptability, and diagnostic reliability. This comprehensive review presents a multi-dimensional classification of NDT/NDE methods, structured by physical principles, functional objectives, and application domains. Special attention is given to hybrid and multi-material systems, which exhibit anisotropic behavior, interfacial complexity, and heterogeneous defect mechanisms that challenge conventional inspection. Alongside established techniques like ultrasonic testing, radiography, infrared thermography, and acoustic emission, the review explores emerging modalities such as capacitive sensing, electromechanical impedance, and AI-enhanced platforms that are driving the future of intelligent diagnostics. By synthesizing insights from the recent literature, the paper evaluates comparative performance metrics (e.g., sensitivity, resolution, adaptability); highlights integration strategies for embedded monitoring and multimodal sensing systems; and addresses challenges related to environmental sensitivity, data interpretation, and standardization. The transformative role of NDE 4.0 in enabling automated, real-time, and predictive structural assessment is also discussed. This review serves as a valuable reference for researchers and practitioners developing next-generation NDT/NDE solutions for hybrid and high-performance structures.

摘要

无损检测(NDT)和无损评估(NDE)是确保航空航天、民用基础设施、能源和先进制造等领域关键系统结构完整性、安全性和可靠性的重要工具。随着工程材料发展成为越来越复杂的结构,如纤维增强聚合物、纤维金属层压板、夹层复合材料和功能梯度材料,传统无损检测技术在灵敏度、适应性和诊断可靠性方面面临越来越大的限制。本综述对无损检测/无损评估方法进行了多维度分类,按照物理原理、功能目标和应用领域进行构建。特别关注了混合和多材料系统,这些系统表现出各向异性行为、界面复杂性和异质缺陷机制,对传统检测提出了挑战。除了超声检测、射线照相、红外热成像和声发射等成熟技术外,本综述还探讨了电容传感、机电阻抗和人工智能增强平台等新兴模式,这些模式正在推动智能诊断的未来发展。通过综合近期文献的见解,本文评估了比较性能指标(如灵敏度、分辨率、适应性);强调了嵌入式监测和多模态传感系统的集成策略;并解决了与环境敏感性、数据解释和标准化相关的挑战。还讨论了无损评估4.0在实现自动化、实时和预测性结构评估方面的变革性作用。本综述为研究人员和从业者开发用于混合和高性能结构的下一代无损检测/无损评估解决方案提供了有价值的参考。

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