Tai Jan Lean, Sultan Mohamed Thariq Hameed, Łukaszewicz Andrzej, Józwik Jerzy, Oksiuta Zbigniew, Shahar Farah Syazwani
Department of Aerospace Engineering, Faculty of Engineering, Universiti Putra Malaysia, Serdang 43400, Selangor, Malaysia.
Laboratory of Biocomposite Technology, Institute of Tropical Forestry and Forest Products (INTROP), Universiti Putra Malaysia, Serdang 43400, Selangor, Malaysia.
Materials (Basel). 2025 Jul 2;18(13):3146. doi: 10.3390/ma18133146.
Non-destructive testing (NDT) methods are critical for evaluating the structural integrity of and detecting defects in composite materials across industries such as aerospace and renewable energy. This review examines the recent trends and successful implementations of NDT approaches for composite materials, focusing on articles published between 2015 and 2025. A systematic literature review identified 120 relevant articles, highlighting techniques such as ultrasonic testing (UT), acoustic emission testing (AET), thermography (TR), radiographic testing (RT), eddy current testing (ECT), infrared thermography (IRT), X-ray computed tomography (XCT), and digital radiography testing (DRT). These methods effectively detect defects such as debonding, delamination, and voids in fiber-reinforced polymer (FRP) composites. The selection of NDT approaches depends on the material properties, defect types, and testing conditions. Although each technique has advantages and limitations, combining multiple NDT methods enhances the quality assessment of composite materials. This review provides insights into the capabilities and limitations of various NDT techniques and suggests future research directions for combining NDT methods to improve quality control in composite material manufacturing. Future trends include adopting multimodal NDT systems, integrating digital twin and Industry 4.0 technologies, utilizing embedded and wireless structural health monitoring, and applying artificial intelligence for automated defect interpretation. These advancements are promising for transforming NDT into an intelligent, predictive, and integrated quality assurance system.
无损检测(NDT)方法对于评估航空航天和可再生能源等行业中复合材料的结构完整性以及检测其缺陷至关重要。本综述考察了复合材料无损检测方法的最新趋势和成功应用,重点关注2015年至2025年间发表的文章。一项系统的文献综述确定了120篇相关文章,突出了诸如超声检测(UT)、声发射检测(AET)、热成像(TR)、射线检测(RT)、涡流检测(ECT)、红外热成像(IRT)、X射线计算机断层扫描(XCT)和数字射线检测(DRT)等技术。这些方法能有效检测纤维增强聚合物(FRP)复合材料中的脱粘、分层和孔隙等缺陷。无损检测方法的选择取决于材料特性、缺陷类型和测试条件。尽管每种技术都有其优缺点,但结合多种无损检测方法可提高复合材料的质量评估。本综述深入探讨了各种无损检测技术的能力和局限性,并提出了未来将无损检测方法相结合以改善复合材料制造质量控制的研究方向。未来趋势包括采用多模态无损检测系统、整合数字孪生和工业4.0技术、利用嵌入式和无线结构健康监测以及应用人工智能进行自动缺陷解读。这些进展有望将无损检测转变为一个智能、预测性和集成化的质量保证系统。