A Comprehensive Review of Rheological Dynamics and Process Parameters in 3D Concrete Printing (2025-06)¶
Si Wen, ,
Journal Article - Journal of Composites Science, Vol. 9, Iss. 6, No. 299
Abstract
Three-dimensional concrete printing (3DCP) represents a paradigm shift in construction technology, enabling the automated, formwork-free fabrication of intricate geometries. Despite its rapid growth, successful implementation remains dependent on the precise control of material rheology and printing parameters. This review critically analyzes the foundational rheological properties of static yield stress, dynamic yield stress, plastic viscosity, and thixotropy and their influence on three core printability attributes, i.e., pumpability, extrudability, and buildability. Furthermore, it explores the role of critical process parameters, such as print speed, nozzle dimensions, layer deposition intervals, and standoff distance, in shaping interlayer bonding and structural integrity. Special emphasis is given to modeling frameworks by Suiker, Roussel, and Kruger, which provide robust tools for evaluating structural stability under plastic yield and elastic buckling conditions. The integration of these rheological and process-based insights offers a comprehensive roadmap for optimizing the performance, quality, and scalability of 3DCP.
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44 References
- Alghamdi Hussam, Nair Sooraj, Neithalath Narayanan (2019-02)
Insights into Material-Design, Extrusion Rheology, and Properties of 3D Printable Alkali-Activated Fly-Ash-Based Binders - Arunothayan Arun, Nematollahi Behzad, Khayat Kamal, Ramesh Akilesh et al. (2022-11)
Rheological Characterization of Ultra-High-Performance Concrete for 3D Printing - Buswell Richard, Silva Wilson, Jones Scott, Dirrenberger Justin (2018-06)
3D Printing Using Concrete-Extrusion:
A Roadmap for Research - Chang Ze, Liang Minfei, Chen Yu, Schlangen Erik et al. (2023-09)
Does Early-Age Creep Influence Buildability of 3D Printed Concrete?:
Insights from Numerical Simulations - Chen Mingxu, Yang Lei, Zheng Yan, Huang Yongbo et al. (2020-04)
Yield-Stress and Thixotropy-Control of 3D Printed Calcium-Sulfoaluminate Cement Composites with Metakaolin Related to Structural Build-Up - Ding Tao, Xiao Jianzhuang, Mechtcherine Viktor (2023-05)
Microstructure and Mechanical Properties of Inter-Layer Regions in Extrusion-Based 3D Printed Concrete:
A Critical Review - Ducoulombier Nicolas, Mesnil Romain, Carneau Paul, Demont Léo et al. (2021-05)
The “Slugs-Test” for Extrusion-Based Additive Manufacturing:
Protocol, Analysis and Practical Limits - Feys Dimitri, Schutter Geert, Fataei Shirin, Martys Nicos et al. (2022-01)
Pumping of Concrete:
Understanding a Common Placement Method with Lots of Challenges - Gu Yucun, Khayat Kamal (2024-05)
Extrudability Window and Off-Line Test-Methods to Predict Buildability of 3D Printing Concrete - He Lewei, Tan Jolyn, Chow Wai, Li Hua et al. (2021-11)
Design of Novel Nozzles for Higher Inter-Layer Strength of 3D Printed Cement-Paste - Khan Shoukat, İlcan Hüseyin, Imram Ramsha, Aminipour Ehsan et al. (2024-01)
The Impact of Nozzle-Diameter and Printing Speed on Geopolymer-Based 3D Printed Concrete Structures:
Numerical Modeling and Experimental Validation - Kruger Jacques, Zeranka Stephan, Zijl Gideon (2019-07)
3D Concrete Printing:
A Lower-Bound Analytical Model for Buildability-Performance-Quantification - Lee Keon-Woo, Lee Hojae, Choi Myoungsung (2022-07)
Correlation Between Thixotropic Behavior and Buildability for 3D Concrete Printing - Mechtcherine Viktor, Bos Freek, Perrot Arnaud, Silva Wilson et al. (2020-03)
Extrusion-Based Additive Manufacturing with Cement-Based Materials:
Production Steps, Processes, and Their Underlying Physics - Mohan Manu, Rahul Attupurathu, Tittelboom Kim, Schutter Geert (2020-10)
Rheological and Pumping Behavior of 3D Printable Cementitious Materials with Varying Aggregate Content - Nair Sooraj, Alghamdi Hussam, Arora Aashay, Mehdipour Iman et al. (2019-01)
Linking Fresh Paste Microstructure, Rheology and Extrusion-Characteristics of Cementitious Binders for 3D Printing - Nerella Venkatesh, Hempel Simone, Mechtcherine Viktor (2019-02)
Effects of Layer-Interface Properties on Mechanical Performance of Concrete Elements Produced by Extrusion-Based 3D Printing - 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? - Panda Biranchi, Mohamed Nisar, Paul Suvash, Bhagath Singh Gangapatnam et al. (2019-07)
The Effect of Material Fresh Properties and Process Parameters on Buildability and Inter-Layer Adhesion of 3D Printed Concrete - Perrot Arnaud, Mélinge Yannick, Estellé Patrice, Lanos Christophe (2009-04)
Vibro-Extrusion:
A New Forming Process for Cement-Based Materials - Perrot Arnaud, Rangeard Damien, Nerella Venkatesh, Mechtcherine Viktor (2019-02)
Extrusion of Cement-Based Materials:
An Overview - Roussel Nicolas (2018-05)
Rheological Requirements for Printable Concretes - Sakka Fatima, Assaad Joseph, Hamzeh Farook, Nakhoul Charbel (2019-07)
Thixotropy and Interfacial Bond Strengths of Polymer-Modified Printed Mortars - Sanjayan Jay, Jayathilakage Roshan, Rajeev Pathmanathan (2020-11)
Vibration-Induced Active Rheology-Control for 3D Concrete Printing - Sanjayan Jay, Nematollahi Behzad, Xia Ming, Marchment Taylor (2018-04)
Effect of Surface Moisture on Inter-Layer Strength of 3D Printed Concrete - Shahzad Qamar, Abbas Nadeem, Akbar Muhammad, Sabi Ehab et al. (2024-03)
Influence of Print-Speed and Nozzle-Diameter on the Fiber-Alignment in 3D Printed Ultra-High-Performance Concrete - Suiker Akke (2018-01)
Mechanical Performance of Wall Structures in 3D Printing Processes:
Theory, Design Tools and Experiments - Suiker Akke, Wolfs Robert, Lucas Sandra, Salet Theo (2020-06)
Elastic Buckling and Plastic Collapse During 3D Concrete Printing - 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 (2019-03)
Hardened Properties of 3D Printed Concrete:
The Influence of Process Parameters on Inter-Layer Adhesion - Wolfs Robert, Bos Freek, Salet Theo (2019-06)
Triaxial Compression Testing on Early-Age Concrete for Numerical Analysis of 3D Concrete Printing - Wolfs Robert, Salet Theo, Roussel Nicolas (2021-10)
Filament-Geometry-Control in Extrusion-Based Additive Manufacturing of Concrete:
The Good, the Bad and the Ugly - Wolfs Robert, Suiker Akke (2019-06)
Structural Failure During Extrusion-Based 3D Printing Processes - Xu Zhuoyue, Zhang Dawang, Li Hui, Sun Xuemei et al. (2022-05)
Effect of FA and GGBFS on Compressive Strength, Rheology, and Printing Properties of Cement-Based 3D Printing Material - Yao Hao, Xie Zonglin, Li Zemin, Huang Chuhan et al. (2021-11)
The Relationship Between the Rheological Behavior and Inter-Layer Bonding Properties of 3D Printing Cementitious Materials with the Addition of Attapulgite - Yin Yunchao, Huang Jian, Wang Tiezhu, Yang Rong et al. (2023-09)
Effect of Hydroxypropyl-Methylcellulose on Rheology and Printability of the First Printed Layer of Cement Activated Slag-Based 3D Printing Concrete - Zhang Chao, Nerella Venkatesh, Krishna Anurag, Wang Shen et al. (2021-06)
Mix-Design Concepts for 3D Printable Concrete:
A Review - Zhang Yi, Ren Qiang, Dai Xiaodi, Tao Yaxin et al. (2024-03)
A Potential Active Rheology-Control Approach for 3D Printable Cement-Based Materials:
Coupling of Temperature and Viscosity-Modifiers - Zhang Nan, Sanjayan Jay (2023-01)
Extrusion Nozzle Design and Print Parameter Selections for 3D Concrete Printing - Zhang Hongping, Wang Jianhong, Liu Yaling, Zhang Xiaoshuang et al. (2021-11)
Effect of Processing Parameters on the Printing Quality of 3D Printed Composite Cement-Based Materials - Zhang Yu, Zhang Yunsheng, She Wei, Yang Lin et al. (2019-01)
Rheological and Hardened Properties of the High-Thixotropy 3D Printing Concrete - Zhao Zhihui, Chen Mingxu, Jin Yuan, Lu Lingchao et al. (2022-05)
Rheology-Control Towards 3D Printed Magnesium-Potassium-Phosphate-Cement Composites - Zhou Xiangming, Li Zongjin, Fan Mizi, Chen Huapeng (2013-01)
Rheology of Semi-Solid Fresh Cement-Pastes and Mortars in Orifice-Extrusion - Zhou Wen, Zhang Yamei, Ma Lei, Li Victor (2022-04)
Influence of Printing Parameters on 3D Printing Engineered Cementitious Composites
11 Citations
- Teixeira João, Jesus Manuel, Rangel Bárbara, Alves Jorge et al. (2026-01)
Evaluation of Printing Performance of Cementitious Pastes with Alternative Powders - 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 - Dubey Pratik, Maurya Madan (2026-01)
A Comprehensive Review of 3D Printing in Construction:
Technology, Materials, and Digital Workflow - Hechtl Christian, Dahlenburg Maximilian, Bos Freek, Kränkel Thomas et al. (2025-12)
Adaptive-Binder-Aggregate Mixing (ABAM):
Concept for Extrusion-Based Multi-Material 3D Concrete Printing - Si Wen, Khan Mehran, McNally Ciaran (2025-11)
Rheological Optimization and Mechanical Performance Assessment of High-Volume GGBS-Silica Fume Mortars for 3D Printing - Bradshaw James, Balasubramanian Swathi, Si Wen, Khan Mehran et al. (2025-10)
Towards Greener 3D Printing:
A Performance Evaluation of Silica Fume-Modified Low-Carbon Concrete - Akgümüş Fatih, Şahin Hatice, Mardani Ali (2025-10)
Investigation of Waste Steel Fiber Usage Rate and Length Change on Some Fresh State Properties of 3D Printable Concrete Mixtures - Si Wen, Hopkins Ben, Khan Mehran, McNally Ciaran (2025-09)
Towards Sustainable Mortar:
Optimising Sika-Fiber Dosage in Ground Granulated Blast Furnace Slag and Silica Fume Blends for 3D Concrete Printing - Zhou Yuecheng, Xiao Sai, Li Haonian, Wang Chong et al. (2025-08)
Study on the Rheological Properties and Printability of Multi-Scale Material Modified Mortar for 3D Printing - Si Wen, Carr Liam, Zia Asad, Khan Mehran et al. (2025-08)
Advancing 3D Printable Concrete with Nanoclays:
Rheological and Mechanical Insights for Construction Applications - Si Wen, Khan Mehran, McNally Ciaran (2025-08)
Effect of Nano Silica with High Replacement of GGBS on Enhancing Mechanical Properties and Rheology of 3D Printed Concrete
BibTeX
@article{si_khan_mcna.2025.ACRoRDaPPi3CP,
author = "Wen Si and Mehran Khan and Ciaran McNally",
title = "A Comprehensive Review of Rheological Dynamics and Process Parameters in 3D Concrete Printing",
doi = "10.3390/jcs9060299",
year = "2025",
journal = "Journal of Composites Science",
volume = "9",
number = "6",
pages = "299",
}
Formatted Citation
W. Si, M. Khan and C. McNally, “A Comprehensive Review of Rheological Dynamics and Process Parameters in 3D Concrete Printing”, Journal of Composites Science, vol. 9, no. 6, p. 299, 2025, doi: 10.3390/jcs9060299.
Si, Wen, Mehran Khan, and Ciaran McNally. “A Comprehensive Review of Rheological Dynamics and Process Parameters in 3D Concrete Printing”. Journal of Composites Science 9, no. 6 (2025): 299. https://doi.org/10.3390/jcs9060299.