Please use this identifier to cite or link to this item: /library/oar/handle/123456789/146226
Title: Computer vision and machine learning approaches for defect detection in 3D-printed cementitious materials : a systematic review
Authors: Musarat, Muhammad Ali
Borg, Ruben Paul
Wei, Jingjie
Debono, Carl James
Khayat, Kamal
Keywords: Additive manufacturing
Concrete construction -- Technological innovations
Three-dimensional printing -- Industrial applications
Concrete -- Quality control
Computer vision -- Industrial applications
Machine learning -- Industrial applications
Issue Date: 2026
Publisher: MDPI AG
Citation: Musarat, M. A., Borg, R. P., Wei, J., Debono, C. J., & Khayat, K. (2026). Computer Vision and Machine Learning Approaches for Defect Detection in 3D-Printed Cementitious Materials: A Systematic Review. Infrastructures, 11(5), 159.
Abstract: 3D printing is evolving at a fast pace in both the manufacturing and construction sectors. These advancements can greatly benefit these industries. However, the 3D printing of concrete structures presents some challenges due to defects in the 3D concrete printed elements. Hence, this study systematically reviews Artificial Intelligence (AI)-driven techniques, such as Computer Vision and Machine Learning, to identify surface defects that can occur in 3D-printed cementitious material structures. The adopted methodology was the PRISMA statement with the aim of reporting the systematic review and meta-analysis. Two well-known databases,Web of Science and Scopus, were utilised for data extraction of articles published during the past 10 years, between 2014 and May 2025. The initial search provided 110 articles, both conference and journal papers; after screening, only 11 were left for the final review assessment. The smaller number of the final articles shows that much work is still needed in this area. It has been observed that various computer vision and machine learning-based methodologies were employed to classify defects in 3D concrete printed structures. Deep learning algorithms, such as YOLO and RT-DETR, were featured as the most efficient in real-time defect detection and quality monitoring. It was also observed that real-time monitoring systems attached to 3D printers help in reducing the material wastage, which is essential to meet the sustainable goals. However, more work is still required to underline the defects of 3D-printed cementitious material, probably with the involvement of AI image processing tools and techniques. This can help to automate the defects in 3D-printed structures, and by this, the productivity could be enhanced.
URI: https://www.um.edu.mt/library/oar/handle/123456789/146226
Appears in Collections:Scholarly Works - FacBenCPM



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