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

Неразрушающий контроль и оценка гибридных и передовых конструкций: комплексный обзор методов, применений и перспективных тенденций
Farima Abdollahi-Mamoudan, Clemente Ibarra‐Castanedo, Xavier Maldague
2025-06-10

NDE 4.0hybrid and multi-material systemsmultimodal sensing systemsnon-destructive testing and evaluationultrasonic testing
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.
1
Emerging techniques including capacitive sensing, electromechanical impedance, and AI-enhanced platforms expand capabilities for intelligent diagnostics.
2
Hybrid and multi-material structures pose distinct inspection challenges because anisotropy, interfacial complexity, and heterogeneous defects limit conventional NDT sensitivity and reliability.
3
NDE 4.0 is identified as enabling automated, real-time, and predictive structural assessment, although environmental sensitivity, data interpretation, and standardization remain challenges.
4
The review compares methods using sensitivity, resolution, and adaptability, while examining integration of embedded monitoring and multimodal sensing systems.
5
The review develops a multidimensional classification of NDT/NDE methods based on physical principles, functional objectives, and application domains.

Hybrid and advanced engineered structures, including fiber-reinforced polymers, fiber-metal laminates, sandwich composites, and functionally graded materials

Non-destructive testing and evaluation methods, their comparative performance, integration into embedded and multimodal monitoring systems, and emerging capabilities for automated, real-time, and predictive structural assessment

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2025-06-10
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Farima Abdollahi-Mamoudan
Clemente Ibarra‐Castanedo
Xavier Maldague
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