Automatic Detection and Isolation of Filament-Width-Deviation During 3D Printing of Recycled Construction-Material (2023-09)¶
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Journal Article - IEEE/ASME Transactions on Mechatronics, pp. 1-10
Abstract
In this work, we deal with the problem of quality control in the continuous deposition of construction material (concrete), printed in 3-D by a robotic device, in order to produce shapes with complex geometry. Thus, a methodology for online quality monitoring of 3-D concrete printing has been developed. This methodology enables the automatic and real-time detection of deviations in the filament width during material deposition. It also allows to locate the origin of the deviation of the filament by establishing a correlation between the curvature of the shape to be printed, the speed of the robot-nozzle, and the flow rate of the printing material. Filament width estimation is performed using a deep learning instance segmentation model and a corresponding binary mask, then a morphology-based approach is applied to the mask to calculate the overall filament width. Finally, a fault detection and isolation-based method is then applied to monitor the residual signals from the printing process under the guidance of the generated adaptive thresholds to detect and isolate the filament width deviation geometric defect. The experimental results show that this printing quality control methodology improves the process of 3-D printing construction materials in real time
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6 Citations
- Yang Xinrui, Lakhal Othman, Belarouci Abdelkader, Merzouki Rochdi (2025-10)
Adaptive Velocity Compensation for Optimal 3D Concrete Printing in Uncontrolled Environments - Yang Xinrui, Lakhal Othman, Belarouci Abdelkader, Merzouki Rochdi (2025-09)
From Qualitative Diagnosis to Adaptive Compensation for Filament Imperfections During On-Site Robotic 3D Printing - Mawas Karam, Maboudi Mehdi, Gerke Markus (2025-09)
A Review on Geometry and Surface Inspection in 3D Concrete Printing - Ingle Vaibhav, Prem Prabhat (2025-07)
Acoustic Emission Examination of 3D Printed Ultra-High Performance Concrete with and Without Coarse Aggregate Under Fresh and Hardened States - Bahoria Boskey, Bhagat Rajesh, Pande Prashant, Raut Jayant et al. (2024-12)
Design-Optimization of 3D Printed Concrete Elements Considering Life Cycle Assessment and Life Cycle Costing - Rehman Atta, Kim Ik-Gyeom, Kim Jung-Hoon (2024-01)
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Development of an Automated and In-Line Test-Method for In-Situ Assessment of Structural Build-Up and Quality of Concrete
BibTeX
@article{yang_lakh_bela_merz.2023.ADaIoFWDD3PoRCM,
author = "Xinrui Yang and Othman Lakhal and Abdelkader Belarouci and Rochdi Merzouki",
title = "Automatic Detection and Isolation of Filament-Width-Deviation During 3D Printing of Recycled Construction-Material",
doi = "10.1109/tmech.2023.3313693",
year = "2023",
journal = "IEEE/ASME Transactions on Mechatronics",
pages = "1--10",
}
Formatted Citation
X. Yang, O. Lakhal, A. Belarouci and R. Merzouki, “Automatic Detection and Isolation of Filament-Width-Deviation During 3D Printing of Recycled Construction-Material”, IEEE/ASME Transactions on Mechatronics, pp. 1–10, 2023, doi: 10.1109/tmech.2023.3313693.
Yang, Xinrui, Othman Lakhal, Abdelkader Belarouci, and Rochdi Merzouki. “Automatic Detection and Isolation of Filament-Width-Deviation During 3D Printing of Recycled Construction-Material”. IEEE/ASME Transactions on Mechatronics, 2023, 1–10. https://doi.org/10.1109/tmech.2023.3313693.