Automating Mix-Design for 3D Concrete Printing Using Optimization Methods (2022-07)¶
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Journal Article - Digital Discovery, Vol. 1, Iss. 5, pp. 645-657
Abstract
3D concrete printing technology introduces automation to the construction industry. The wider build customizability is a great advantage of this technology, but it adds complexity to the mix design. The compositions formed are far more complex than in conventional concrete, increasing the difficulty in designing mixtures for 3D concrete printing. As the number of materials in mix design increases, the workload increases exponentially during the development process. In this study, optimization methods are employed to automate the development of mortar mixes. The three objectives are the improvement of workability, buildability, and compressive strength. Eight factors are investigated in total, with three being qualitative and five quantitative. Those factors include cement, sand, and superplasticizer types as well as the water-to-binder ratio, the sand-to-binder ratio, and admixtures dosages. An initial D-optimal set of 18 mixtures is formed to drastically reduce the number of experiments. Feedforward neural networks are used to predict the properties of new mixtures. To increase the accuracy of the models, the genetic algorithm is used to optimize the hyperparameters of each network. Finally, the Paretooptimization algorithm is used to control the materials and their dosages with the aim of simultaneously optimising the values of the three objectives. The proposed multiobjective approach generated mixtures with improved properties that met all three criteria after only five iterations and twenty-one additional mixtures were formed. The results indicate that this methodology can reduce the required workload while generating mixture compositions with improved properties by following an optimum trend.
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22 References
- Bos Freek, Wolfs Robert, Ahmed Zeeshan, Salet Theo (2016-08)
Additive Manufacturing of Concrete in Construction:
Potentials and Challenges of 3D Concrete Printing - Buswell Richard, Silva Wilson, Jones Scott, Dirrenberger Justin (2018-06)
3D Printing Using Concrete-Extrusion:
A Roadmap for Research - Chen Yu, He Shan, Gan Yidong, Çopuroğlu Oğuzhan et al. (2021-11)
A Review of Printing-Strategies, Sustainable Cementitious Materials and Characterization Methods in the Context of Extrusion-Based 3D Concrete Printing - Ding Tao, Xiao Jianzhuang, Zou Shuai, Wang Yu (2020-06)
Hardened Properties of Layered 3D Printed Concrete with Recycled Sand - Ivanova Irina, Mechtcherine Viktor (2020-03)
Effects of Volume Fraction and Surface Area of Aggregates on the Static Yield-Stress and Structural Build-Up of Fresh Concrete - Jayathilakage Roshan, Sanjayan Jay, Rajeev Pathmanathan (2019-01)
Direct-Shear-Test for the Assessment of Rheological Parameters of Concrete for 3D Printing Applications - Kruger Jacques, Zeranka Stephan, Zijl Gideon (2019-07)
An Ab-Inito Approach for Thixotropy Characterisation of Nano-Particle-Infused 3D Printable Concrete - Le Thanh, Austin Simon, Lim Sungwoo, Buswell Richard et al. (2012-01)
Hardened Properties of High-Performance Printing Concrete - Ma Guowei, Li Zhijian, Wang Li (2017-12)
Printable Properties of Cementitious Material Containing Copper-Tailings for Extrusion-Based 3D Printing - Marchon Delphine, Kawashima Shiho, Bessaies-Bey Hela, Mantellato Sara et al. (2018-05)
Hydration- and Rheology-Control of Concrete for Digital Fabrication:
Potential Admixtures and Cement-Chemistry - Mohammed Alyaa, Saadi Nihad (2020-12)
Ultra-High Early Strength Cementitious Grout Suitable for Additive Manufacturing Applications Fabricated by Using Graphene Oxide and Viscosity Modifying Agents - Rahul Attupurathu, Santhanam Manu, Meena Hitesh, Ghani Zimam (2018-12)
3D Printable Concrete:
Mixture-Design and Test-Methods - Roussel Nicolas (2018-05)
Rheological Requirements for Printable Concretes - Sergis Vasileios, Charrier Malo, Ouellet-Plamondon Claudiane (2020-07)
Prediction of the Yield-Stress of Printing Mortar-Ink - Sergis Vasileios, Ouellet-Plamondon Claudiane (2022-04)
D-Optimal Design of Experiments Applied to 3D High-Performance Concrete Printing Mix-Design - Sergis Vasileios, Ouellet-Plamondon Claudiane (2022-06)
Fractional Factorial Design to Study Admixtures Used for 3D Concrete Printing Applications - Tan Kang (2018-09)
The Framework of Combining Artificial Intelligence and Construction 3D Printing in Civil Engineering - Tay Yi, Qian Ye, Tan Ming (2019-05)
Printability-Region for 3D Concrete Printing Using Slump- and Slump-Flow-Test - Wolfs Robert, Bos Freek, Salet Theo (2018-02)
Early-Age Mechanical Behaviour of 3D Printed Concrete:
Numerical Modelling and Experimental Testing - Wolfs Robert, Bos Freek, Salet Theo (2019-06)
Triaxial Compression Testing on Early-Age Concrete for Numerical Analysis of 3D Concrete Printing - Zhang Chao, Nerella Venkatesh, Krishna Anurag, Wang Shen et al. (2021-06)
Mix-Design Concepts for 3D Printable Concrete:
A Review - Zhang Yu, Zhang Yunsheng, Liu Guojian, Yang Yonggan et al. (2018-04)
Fresh Properties of a Novel 3D Printing Concrete Ink
16 Citations
- Tushar Fazlul, Hasan Mehedi, Hasan Kamrul, Mawa Jannatul et al. (2026-01)
Factors Affecting Flowability and Rheological Behavior of 3D Printed Concrete:
A Comprehensive Review - Gil-Lopez Tomas, Amirfiroozkoohi Alireza, Valiente López María, Verdu-Vazquez Maria (2026-01)
The Impact of 3D Printing on Mortar Strength and Flexibility:
A Comparative Analysis of Conventional and Additive Manufacturing Techniques - Iqbal Imtiaz, Kasim Tala, Besklubova Svetlana, Inqiad Waleed et al. (2025-12)
Exploring Knowledge Domains and Future Research Directions in 3D Printed Concrete:
A Bibliometric and Systematic Review - Hammoud Ahmad, Mohomad Yosef, Shomar Hasan, Masad Eyad et al. (2025-12)
Data-Driven Framework for Printability and Geometric Quality Prediction in 3D Concrete Printing - Jin Willy, Ouellet-Plamondon Claudiane, Caron Jean-François (2025-03)
Multi-Objective Optimization of a Sustainable LC3 Mortar for 3D Printing - Yuan Yong, Sheng Ruyi, Yao Xupeng, Pichler Bernhard et al. (2025-03)
A Three-Step Development Strategy for 3D Printable Concrete Containing Coarse Aggregates - Özalp Abdulkadir, Aldemir Alper (2025-03)
Artificial Intelligence-Based Displacement Capacity Prediction Tool for Three-Dimensional Printed Concrete Walls - Gardan Julien, Hedjazi Lofti, Attajer Ali (2025-02)
Additive Manufacturing in Construction:
State of the Art and Emerging Trends in Civil Engineering - Mohammed Arafat, Tamimi Adil, Abdwais Ahmed (2024-12)
Structural Performance of 3D Concrete Printed Load-Bearing Walls - Jin Willy, Caron Jean-François, Ouellet-Plamondon Claudiane (2024-11)
Minimizing the Carbon Footprint of 3D Printing Concrete:
Leveraging Parametric LCA and Neural Networks Through Multi-Objective-Optimization - Jin Willy, Roux Charlotte, Ouellet-Plamondon Claudiane, Caron Jean-François (2024-09)
Life Cycle Assessment of Limestone-Calcined-Clay-Concrete:
Potential for Low-Carbon 3D Printing - Jin Willy, Ouellet-Plamondon Claudiane, Caron Jean-François (2024-09)
Multi-Objective-Optimization of a Sustainable Ternary Mortar for 3D Printing - Capêto Ana, Jesus Manuel, Uribe Braian, Guimarães Ana et al. (2024-05)
Building a Greener Future:
Advancing Concrete Production Sustainability and the Thermal Properties of 3D Printed Mortars - Sergis Vasileios, Ouellet-Plamondon Claudiane (2024-02)
Algorithmic Mix-Design for 3D Printing Materials - Sergis Vasileios, Ouellet-Plamondon Claudiane (2023-06)
An Optimum Mix-Design Method for 3D Concrete Printing Applications - Basha Shaik, Rehman Atta, Aziz Md, Kim Jung-Hoon (2023-02)
Cement Composites with Carbon-Based Nanomaterials for 3D Concrete Printing Applications:
A Review
BibTeX
@article{serg_ouel.2022.AMDf3CPUOM,
author = "Vasileios Sergis and Claudiane M. Ouellet-Plamondon",
title = "Automating Mix-Design for 3D Concrete Printing Using Optimization Methods",
doi = "10.1039/d2dd00040g",
year = "2022",
journal = "Digital Discovery",
volume = "1",
number = "5",
pages = "645--657",
}
Formatted Citation
V. Sergis and C. M. Ouellet-Plamondon, “Automating Mix-Design for 3D Concrete Printing Using Optimization Methods”, Digital Discovery, vol. 1, no. 5, pp. 645–657, 2022, doi: 10.1039/d2dd00040g.
Sergis, Vasileios, and Claudiane M. Ouellet-Plamondon. “Automating Mix-Design for 3D Concrete Printing Using Optimization Methods”. Digital Discovery 1, no. 5 (2022): 645–57. https://doi.org/10.1039/d2dd00040g.