Extrudable Region Parametrical Study of 3D Printable Concrete Using Recycled-Glass Concrete (2022-01)¶
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Journal Article - Journal of Building Engineering, Vol. 50
Abstract
3D concrete printing (3DCP) is gaining much attention due to the absence of formwork, allowing more freedom in the architectural design, and reducing construction costs significantly. The lack of formwork configuration in the 3DCP technique requires the printable concrete to possess self-supporting properties. Furthermore, the yield stress evolution over time caused by the structuration build-up of the cement also allows a larger buildable height of the print. However, before the structuration in the material occurs, the concrete needs to possess high initial yield stress to maintain its shape upon extrusion during the early stage of the printing process. Although it is advantageous to have higher yield stress for the buildability of the concrete, the extrudability of the concrete should also be considered. When the yield stress of the concrete is too high, the pumping effort to cause flow in the concrete becomes too high and the extruded filament displays defects on the surface of the filament. This study aims to study the effects of various material parameters on the concrete extrudability and buildability to determine the extrudable region of the concrete mix design using a graphical approach. The material parameters that are being studied in this research includes aggregates fraction, attapulgite nano-clay content, and aggregates fineness. The results shows that the mix designs at the extrudable limit surface is most optimal for 3D concrete printing as it has the maximum buildability with the extrudable region.
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24 References
- Álvarez-Fernández Martina, Prendes-Gero María, González-Nicieza Celestino, Guerrero-Miguel Diego-José et al. (2021-02)
Optimum Mix-Design for 3D Concrete Printing Using Mining-Tailings:
A Case Study in Spain - Jayathilakage Roshan, Rajeev Pathmanathan, Sanjayan Jay (2020-01)
Yield-Stress-Criteria to Assess the Buildability of 3D Concrete Printing - Jayathilakage Roshan, Rajeev Pathmanathan, Sanjayan Jay (2021-05)
Extrusion Rheometer for 3D Concrete Printing - Kazemian Ali, Yuan Xiao, Cochran Evan, Khoshnevis Behrokh (2017-04)
Cementitious Materials for Construction-Scale 3D Printing:
Laboratory Testing of Fresh Printing Mixture - Le Thanh, Austin Simon, Lim Sungwoo, Buswell Richard et al. (2012-01)
Mix-Design and Fresh Properties for High-Performance Printing Concrete - Lin Jia, Wu Xiong, Yang Wen, Zhao Ri et al. (2018-02)
The Influence of Fine Aggregates on the 3D Printing Performance - Liu Zhixin, Li Mingyang, Weng Yiwei, Wong Teck et al. (2018-12)
Mixture-Design-Approach to Optimize the Rheological Properties of the Material Used in 3D Cementitious Material-Printing - Ma Siwei, Kawashima Shiho (2018-09)
Rheological and Water Transport Properties of Cement-Pastes Modified with Diutan Gum and Attapulgite-Palygorskite-Nano-Clay for 3D Concrete Printing - Ma Guowei, Li Zhijian, Wang Li (2017-12)
Printable Properties of Cementitious Material Containing Copper-Tailings for Extrusion-Based 3D Printing - Panda Biranchi, Lim Jian, Tan Ming (2019-02)
Mechanical Properties and Deformation Behavior of Early-Age Concrete in the Context of Digital Construction - Panda Biranchi, Ruan Shaoqin, Unluer Cise, Tan Ming (2018-11)
Improving the 3D Printability of High-Volume Fly-Ash Mixtures via the Use of Nano-Attapulgite-Clay - Panda Biranchi, Tan Ming (2018-03)
Experimental Study on Mix Proportion and Fresh Properties of Fly-Ash-Based Geopolymer for 3D Concrete Printing - Qian Ye, Kawashima Shiho (2016-09)
Use of Creep Recovery Protocol to Measure Static Yield-Stress and Structural Rebuilding of Fresh Cement-Pastes - Qian Ye, Schutter Geert (2018-06)
Enhancing Thixotropy of Fresh Cement-Pastes with Nano-Clay in Presence of Polycarboxylate-Ether Superplasticizer (PCE) - Roussel Nicolas (2018-05)
Rheological Requirements for Printable Concretes - Suiker Akke (2021-11)
Effect of Accelerated Curing and Layer Deformations on Structural Failure During Extrusion-Based 3D Printing - Suiker Akke, Wolfs Robert, Lucas Sandra, Salet Theo (2020-06)
Elastic Buckling and Plastic Collapse During 3D Concrete Printing - Tay Yi, Li Mingyang, Tan Ming (2019-04)
Effect of Printing Parameters in 3D Concrete Printing:
Printing Region and Support Structures - Tay Yi, Panda Biranchi, Paul Suvash, Mohamed Nisar et al. (2017-05)
3D Printing Trends in Building and Construction Industry:
A Review - Tay Yi, Ting Guan, Qian Ye, Panda Biranchi et al. (2018-07)
Time-Gap-Effect on Bond Strength of 3D Printed Concrete - 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 - Yu Shiwei, Xia Ming, Sanjayan Jay, Yang Lin et al. (2021-07)
Microstructural Characterization of 3D Printed Concrete - Yuan Qiang, Li Zemin, Zhou Dajun, Huang Tingjie et al. (2019-08)
A Feasible Method for Measuring the Buildability of Fresh 3D Printing Mortar
42 Citations
- Türk Ayşe, Türk Furkan, Edebali Serpil, Keskin Ülkü (2025-11)
3D Printable Mortars with Green Materials:
Sustainable Solutions with Nanocellulose - Cheng Zhangqi, Zhou Lu, Jia Xiangxi, Liu Renlong (2025-10)
Experimental Study on Crack Development and Fracture Performance of 3D Printed Green Engineered Cementitious Composites - Sabouni Reem, Martini Samer (2025-09)
Characterization of 3D Printed Concrete Mixtures Developed Using Local UAE Materials Based on Rheological Properties - Su Yanli, Wu Chang, Shang Jiaqi, Zhang Pu (2025-06)
Mechanical Properties of 3D-Printed High-Ductility Cementitious Composite with Sulphoaluminate Cement and Modified Crumb Rubber - Tao Yaxin, Zhang Yi, Mohan Manu, Dai Xiaodi et al. (2025-05)
Waste-Derived Aggregates in 3D Printable Concrete:
Current Insights and Future Perspectives - Mishra Sanjeet, Snehal K., Das B., Chandrasekaran Rajasekaran et al. (2025-05)
From Printing to Performance:
A Review on 3D Concrete Printing Processes, Materials, and Life Cycle Assessment - Tran Mien, Le Thanh, Cao Nguyen, Nguyen Thi (2025-03)
Sustainable Prospect for Entire Replacement of River Sand with Recycled Glass Aggregate in 3D Printing Concrete:
Rheological Properties, Printability, and Alkali-Silica Reaction - Irshidat Mohammad, Cabibihan John-John, Fadli Fodil, Ramahi Siraj et al. (2024-12)
Waste Materials Utilization in 3D Printable Concrete for Sustainable Construction Applications:
A Review - Habibi Alireza, Buswell Richard, Osmani Mohamed, Aziminezhad Mohamadmahdi (2024-11)
Sustainability Principles in 3D Concrete Printing:
Analysing Trends, Classifying Strategies, and Future Directions - Zhao Herui, Jiang Quan, Xia Yong, Liu Jian et al. (2024-11)
Microbial-Induced Carbonate Reinforcement for 3D Printed Concrete:
Testing in Printable and Mechanical Strength - Lim Sean, Tan Ming (2024-10)
A Rheological Model for Concrete Additive Manufacturing - Bao Ta, Yeakleang Muy, Abdelouhab Sandra, Courard Luc (2024-10)
Testing Mortars for 3D Printing:
Correlation with Rheological Behavior - Cuevas Villalobos Karla, Chung Sang-Yeop, Sikora Paweł, Stephan Dietmar (2024-10)
Performance of Normal-Weight and Lightweight 3D Printed Cementitious Composites with Recycled Glass:
Sorption and Microstructural Perspective - Li Shuai, Lan Tian, Nguyen Hung-Xuan, Tran Jonathan (2024-10)
Frontiers in Construction 3D Printing:
Self-Monitoring, Multi-Robot, Drone-Assisted Processes - Lim Sean, Tay Yi, Paul Suvash, Lee Junghyun et al. (2024-09)
Carbon Capture and Sequestration with In-Situ CO2 and Steam Integrated 3D Concrete Printing - Ting Guan, Tay Yi, Quah Tan, Tan Ming et al. (2024-09)
Sustainable Support-Material for Overhang Printing in 3D Concrete Printing Technology - Rehman Saif, Riaz Raja, Usman Muhammad, Kim In-Ho (2024-08)
Augmented Data-Driven Approach Towards 3D Printed Concrete Mix Prediction - Pasupathy Kirubajiny, Ramakrishnan Sayanthan, Mechtcherine Viktor, Sanjayan Jay (2024-07)
Alkali-Activated Waste Glass-Based Geopolymer Concrete for Digital Construction - Villiers Wibke, Mwongo Mwiti, Babafemi Adewumi, Zijl Gideon (2024-06)
Quantifying Recycled Construction and Demolition Waste for Use in 3D Printed Concrete - Liu Junli, Haikola Pirjo, Fox Kate, Tran Jonathan (2024-06)
3D Printing of Cementitious Composites with Seashell-Particles:
Mechanical and Microstructural Analysis - González-Fonteboa Belén, Seara-Paz Sindy, Caneda-Martínez Laura (2024-06)
3D Printing Concrete with Byproducts - Chen Wenguang, Ye Junhong, Jiang Fangming, Fediuk Roman et al. (2024-05)
Printability Region for 3D Printable Engineered Cementitious Composites - Liu Xinhao, Hu Jiajun, Guo Xiaolu (2024-03)
Printability and Inter-Layer Bonding Property of 3D Printed Fiber-Reinforced Geopolymer - Jia Lutao, Jia Zijian, Zhang Zedi, Tang Zhenzhong et al. (2024-02)
Effect of Recycled Brick-Powder with Various Particle-Features on Early-Age Hydration, Water-State, and Rheological Properties of Blended Cement-Paste in the Context of 3D Printing - Zhao Zengfeng, Ji Chenyuan, Xiao Jianzhuang, Yao Lei et al. (2023-11)
A Critical Review on Reducing the Environmental Impact of 3D Printing Concrete:
Material-Preparation, Construction-Process and Structure-Level - Zhu Binrong, Wang Yufei, Sun Junbo, Wei Yang et al. (2023-10)
An Experimental Study on the Influence of Waste-Rubber-Particles on the Compressive, Flexural and Impact Properties of 3D Printable Sustainable Cementitious Composites - Pan Tinghong, Guo Rongxin, Fu Chaoshu, Ji Xuping et al. (2023-10)
Extrusion-Based 3D Concrete Printing with Different Flow-Direction - Lyu Qifeng, Dai Pengfei, Zong Meirong, Zhu Pinghua et al. (2023-10)
Plant-Germination Ability and Mechanical Strength of 3D Printed Vegetation Concrete Bound with Cement and Soil - Chang Ze, Chen Yu, Schlangen Erik, Šavija Branko (2023-09)
A Review of Methods on Buildability Quantification of Extrusion-Based 3D Concrete Printing:
From Analytical Modelling to Numerical Simulation - Quah Tan, Vo Tran, Tay Yi, Tan Ming et al. (2023-09)
Real-Time-Assessment of Smart Concrete Inspection with Piezoelectric Sensors - Paritala Spandana, Singaram Kailash, Bathina Indira, Khan Mohd et al. (2023-08)
Rheology and Pumpability of Mix Suitable for Extrusion-Based Concrete 3D Printing:
A Review - Riaz Raja, Usman Muhammad, Ali Ammar, Majid Usama et al. (2023-06)
Inclusive Characterization of 3D Printed Concrete in Additive Manufacturing:
A Detailed Review - Ali Ammar, Riaz Raja, Malik Umair, Abbas Syed et al. (2023-06)
Machine-Learning-Based Predictive-Model for Tensile and Flexural Strength of 3D Printed Concrete - Arslan Volkan, Dogan Zekeriya (2023-04)
Three-Dimensional, Printable Paving Stone:
A Preliminary Study - Fonseca Mariana, Matos Ana (2023-03)
3D Construction Printing Standing for Sustainability and Circularity:
Material-Level Opportunities - Quah Tan, Tay Yi, Lim Jian, Tan Ming et al. (2023-03)
Concrete 3D Printing:
Process-Parameters for Process-Control, Monitoring and Diagnosis in Automation and Construction - Robayo-Salazar Rafael, Gutiérrez Ruby, Villaquirán-Caicedo Mónica, Delvasto Arjona Silvio (2022-12)
3D Printing with Cementitious Materials:
Challenges and Opportunities for the Construction Sector - Tay Yi, Ting Guan, Panda Biranchi, Wong Teck et al. (2022-11)
Towards Net-Zero in 3DP for Building & Construction - Pan Tinghong, Guo Rongxin, Jiang Yaqing, Ji Xuping (2022-07)
How Do the Contact Surface Forces Affect the Inter-Layer Bond Strength of 3D Printed Mortar? - Mukhametrakhimov Rustem, Ziganshina Liliya (2022-04)
Improvement of Technology and Quality-Control of 3DCP - Huang Xin, Yang Weihao, Song Fangnian, Zou Jiuqun (2022-04)
Study on the Mechanical Properties of 3D Printing Concrete Layers and the Mechanism of Influence of Printing Parameters - Rollakanti Chiranjeevi, Prasad C. (2022-04)
Applications, Performance, Challenges and Current Progress of 3D Concrete Printing Technologies as the Future of Sustainable Construction:
A State of the Art Review
BibTeX
@article{ting_quah_lim_tay.2022.ERPSo3PCURGC,
author = "Guan Heng Andrew Ting and Tan Kai Noel Quah and Jian Hui Lim and Yi Wei Daniel Tay and Ming Jen Tan",
title = "Extrudable Region Parametrical Study of 3D Printable Concrete Using Recycled-Glass Concrete",
doi = "10.1016/j.jobe.2022.104091",
year = "2022",
journal = "Journal of Building Engineering",
volume = "50",
}
Formatted Citation
G. H. A. Ting, T. K. N. Quah, J. H. Lim, Y. W. D. Tay and M. J. Tan, “Extrudable Region Parametrical Study of 3D Printable Concrete Using Recycled-Glass Concrete”, Journal of Building Engineering, vol. 50, 2022, doi: 10.1016/j.jobe.2022.104091.
Ting, Guan Heng Andrew, Tan Kai Noel Quah, Jian Hui Lim, Yi Wei Daniel Tay, and Ming Jen Tan. “Extrudable Region Parametrical Study of 3D Printable Concrete Using Recycled-Glass Concrete”. Journal of Building Engineering 50 (2022). https://doi.org/10.1016/j.jobe.2022.104091.