Performance-Analysis of 3D Concrete Printing Processes Through Discrete-Event-Simulation (2023-05)¶
, Martínez-Chabur Paula, Ramírez-Cifuentes Iván, , Ramis Francisco,
Journal Article - Buildings, Vol. 13, Iss. 6, No. 1390
Abstract
Three-dimensional concrete printing is a technique that has been growing constantly, presenting advantages such as reduced completion times and a decreased environmental impact by eliminating the use of formworks. To carry out the process, the printing path of the extruded material and the movement of a robot must be programmed. Thus, the present research simulated these 3D concrete printing processes in a small 2-floor building of 309.06 m2 and then in a 12-floor building of 10,920 m2. To analyze the 3D printing process, discrete-event simulation was used while considering different variables such as extrusion speed and the locations of a robot mounted on tracks. The results show that when comparing the time taken for a conventional construction system to construct concrete walls and the maximum duration for 3D-printed walls, this method is 45% faster than traditional construction for a small building, but for a big building, there is a difference of 40% in favor of conventional construction; however, this was when using only 1 robot for the whole building. After running the same analyses but using 3 robots instead of 1, the total 3D concrete printing time for the big building was 80% faster in favor of the 3D concrete printing process.
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BibTeX
@article{forc_mart_rami_garc.2023.PAo3CPPTDES,
author = "Eric Forcael and Paula Martínez-Chabur and Iván Ramírez-Cifuentes and Rodrigo García-Alvarado and Francisco Ramis and Alexander Opazo-Vega",
title = "Performance-Analysis of 3D Concrete Printing Processes Through Discrete-Event-Simulation",
doi = "10.3390/buildings13061390",
year = "2023",
journal = "Buildings",
volume = "13",
number = "6",
pages = "1390",
}
Formatted Citation
E. Forcael, P. Martínez-Chabur, I. Ramírez-Cifuentes, R. García-Alvarado, F. Ramis and A. Opazo-Vega, “Performance-Analysis of 3D Concrete Printing Processes Through Discrete-Event-Simulation”, Buildings, vol. 13, no. 6, p. 1390, 2023, doi: 10.3390/buildings13061390.
Forcael, Eric, Paula Martínez-Chabur, Iván Ramírez-Cifuentes, Rodrigo García-Alvarado, Francisco Ramis, and Alexander Opazo-Vega. “Performance-Analysis of 3D Concrete Printing Processes Through Discrete-Event-Simulation”. Buildings 13, no. 6 (2023): 1390. https://doi.org/10.3390/buildings13061390.