Rheological Properties of High-Performance Concrete Reinforced with Microfibers and Their Effects on 3D Printing Process (2025-03)¶
, , Schmitt Duarte Ester, , Cruz Robinson,
Journal Article - Journal of Building Engineering, No. 112406
Abstract
Fiber-reinforced composites have been used to improve the mechanical properties and overall performance of 3D printed concretes. Short fibers improve mechanical properties as well as reduce cracking due to autogenous and drying shrinkage of printed material. Moreover, the rheological properties of micro-reinforced composite materials play an important role to improve their processability by additive manufacturing. Therefore, the present study investigates the effect of micro-fibers addition on rheological properties and 3D printing processability of concrete based composites. For that a set a concrete mixtures containing steel, rock wool, or cellulose microfiber (varying from 0.5 wt.% to 2.0 wt.%) were produced. An extensive rheological assessment of the mixtures, utilizing oscillatory tests modes, like amplitude, frequency and time sweep, was conducted. The capacity to produce a continuous filament (extrudability test) and the ability to support successive layer deposition without failure (buildability test) were evaluated. The results show that incorporating fibers on concrete allows precise control of the material’s rheological properties, leading to optimize printability. The fibers addition increases the storage G’ and loss modulus G’’ of concrete, with the cellulose reinforced concrete exhibiting the highest storage G’ and loss modulus G’’. Consequently, fiber addition affects layer support and open time during printing. Among the tested materials, cellulose fibers had the most significant impact on the concrete rheological behavior. Furthermore, extrusion nozzle size should be adjusted according to fiber length to prevent clogging during extrusion. These findings contribute to better understanding the role of rheological properties in optimizing the 3D printing process of microfiber reinforced concrete.
¶
56 References
- Ahmed Zeeshan, Bos Freek, Brunschot Maikel, Salet Theo (2020-02)
On-Demand Additive Manufacturing of Functionally Graded Concrete - Arunothayan Arun, Nematollahi Behzad, Khayat Kamal, Ramesh Akilesh et al. (2022-11)
Rheological Characterization of Ultra-High-Performance Concrete for 3D Printing - Arunothayan Arun, Nematollahi Behzad, Ranade Ravi, Bong Shin et al. (2020-10)
Development of 3D Printable Ultra-High-Performance Fiber-Reinforced Concrete for Digital Construction - Buswell Richard, Silva Wilson, Jones Scott, Dirrenberger Justin (2018-06)
3D Printing Using Concrete-Extrusion:
A Roadmap for Research - Carneau Paul, Mesnil Romain, Baverel Olivier, Roussel Nicolas (2022-03)
Layer Pressing in Concrete Extrusion-Based 3D Printing:
Experiments and Analysis - 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 - Chen Yu, Liang Minfei, Zhang Yu, Li Zhenming et al. (2023-02)
Can Superabsorbent Polymers Be Used as Rheology-Modifiers for Cementitious Materials in the Context of 3D Concrete Printing - Chen Yu, Zhang Yu, He Shan, Liang Xuhui et al. (2023-06)
Improving Structural Build-Up of Limestone-Calcined-Clay-Cement-Pastes by Using Inorganic Additives - Chu Shaohua, Li Leo, Kwan Albert (2020-09)
Development of Extrudable High-Strength Fiber-Reinforced Concrete Incorporating Nano-Calcium-Carbonate - Giridhar Greeshma, Prem Prabhat, Jiao Dengwu (2023-03)
Effect of Varying Shear Rates at Different Resting Times on the Rheology of 3D Printable Concrete - Hambach Manuel, Volkmer Dirk (2017-02)
Properties of 3D Printed Fiber-Reinforced Portland-Cement-Paste - Harbouz Ilhame, Yahia Ammar, Rozière Emmanuel, Loukili Ahmed (2023-02)
Printing Quality-Control of Cement-Based Materials Under Flow and Rest-Conditions - Ibrahim Kamoru, Zijl Gideon, Babafemi Adewumi (2023-10)
Comparative Studies of LC³- and Fly-Ash-Based Blended Binders in Fiber-Reinforced Printed Concrete:
Rheological and Quasi-Static Mechanical Characteristics - Kilic Ugur, Ma Ji, Baharlou Ehsan, Ozbulut Osman (2023-03)
Effects of Viscosity-Modifying Admixture and Nano-Clay on Fresh and Rheo-Viscoelastic Properties and Printability Characteristics of Cementitious Composites - Li Leo, Xiao Bofeng, Fang Z., Xiong Z. et al. (2020-11)
Feasibility of Glass-Basalt Fiber-Reinforced Seawater Coral Sand Mortar for 3D Printing - Liu Zhenbang, Li Mingyang, Quah Tan, Wong Teck et al. (2023-09)
Comprehensive Investigations on the Relationship Between the 3D Concrete Printing Failure Criterion and Properties of Fresh-State Cementitious Materials - Long Wujian, Tao Jie-Lin, Lin Can, Gu Yucun et al. (2019-08)
Rheology and Buildability of Sustainable Cement-Based Composites Containing Micro-Crystalline Cellulose for 3D Printing - Ma Guowei, Li Zhijian, Wang Li (2017-12)
Printable Properties of Cementitious Material Containing Copper-Tailings for Extrusion-Based 3D Printing - Ma Guowei, Li Zhijian, Wang Li, Wang Fang et al. (2019-01)
Mechanical Anisotropy of Aligned Fiber-Reinforced Composite for Extrusion-Based 3D Printing - Matos Paulo, Zat Tuani, Corazza Kiara, Fensterseifer Emilia et al. (2022-05)
Effect of TiO2 Nano-Particles on the Fresh Performance of 3D Printed Cementitious Materials - Matos Paulo, Zat Tuani, Lima Marcelo, Neto José et al. (2023-08)
Effect of the Superplasticizer-Addition Time on the Fresh Properties of 3D Printed Limestone-Calcined-Clay-Cement (LC³) Concrete - Moeini Mohammad, Hosseinpoor Masoud, Yahia Ammar (2020-05)
Effectiveness of the Rheometric Methods to Evaluate the Build-Up of Cementitious Mortars Used for 3D Printing - Moeini Mohammad, Hosseinpoor Masoud, Yahia Ammar (2022-04)
3D Printing of Cement-Based Materials with Adapted Buildability - Moelich Gerrit, Kruger Jacques, Combrinck Riaan (2020-08)
Plastic Shrinkage Cracking in 3D Printed Concrete - Mohammad Abdul, Biernacki Joseph (2022-06)
2D Stationary Computational Printing of Cement-Based Pastes - Mohan Manu, Rahul Attupurathu, Schutter Geert, Tittelboom Kim (2020-10)
Extrusion-Based Concrete 3D Printing from a Material Perspective:
A State of the Art Review - Mohan Manu, Rahul Attupurathu, Tittelboom Kim, Schutter Geert (2020-10)
Rheological and Pumping Behavior of 3D Printable Cementitious Materials with Varying Aggregate Content - Moini Mohamadreza, Olek Jan, Zavattieri Pablo, Youngblood Jeffrey (2022-04)
Early-Age Buildability-Rheological Properties Relationship in Additively Manufactured Cement-Paste Hollow Cylinders - Mollah Md., Comminal Raphaël, Serdeczny Marcin, Šeta Berin et al. (2023-05)
Computational Analysis of Yield-Stress-Buildup and Stability of Deposited Layers in Material-Extrusion Additive Manufacturing - Nair Sooraj, Tripathi Avinaya, Neithalath Narayanan (2021-09)
Examining Layer-Height Effects on the Flexural and Fracture Response of Plain and Fiber-Reinforced 3D Printed Beams - 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 - Ogura Hiroki, Nerella Venkatesh, Mechtcherine Viktor (2018-08)
Developing and Testing of Strain-Hardening Cement-Based Composites (SHCC) in the Context of 3D Printing - Panda Biranchi, Tan Ming (2018-03)
Experimental Study on Mix Proportion and Fresh Properties of Fly-Ash-Based Geopolymer for 3D Concrete Printing - 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 - Perrot Arnaud, Rangeard Damien, Pierre Alexandre (2015-02)
Structural Build-Up of Cement-Based Materials Used for 3D Printing-Extrusion-Techniques - Pott Ursula, Stephan Dietmar (2021-04)
Penetration-Test as a Fast Method to Determine Yield-Stress and Structural Build-Up for 3D Printing of Cementitious Materials - Rahul Attupurathu, Santhanam Manu, Meena Hitesh, Ghani Zimam (2018-12)
3D Printable Concrete:
Mixture-Design and Test-Methods - Reiter Lex, Wangler Timothy, Anton Ana-Maria, Flatt Robert (2020-05)
Setting-on-Demand for Digital Concrete:
Principles, Measurements, Chemistry, Validation - Roussel Nicolas (2018-05)
Rheological Requirements for Printable Concretes - Salam Mohammad Abdul, Biernacki Joseph (2023-04)
2D Stationary Computational Printing of Cement-Based Pastes with Time-Dependent Rheology - Shao Lijing, Feng Pan, Zuo Wenqiang, Wang Haochuan et al. (2022-02)
A Novel Method for Improving the Printability of Cement-Based Materials:
Controlling the Releasing of Capsules Containing Chemical Admixtures - Souza Marcelo, Ferreira Igor, Moraes Elisângela, Senff Luciano et al. (2020-09)
3D Printed Concrete for Large-Scale Buildings:
An Overview of Rheology, Printing Parameters, Chemical Admixtures, Reinforcements, and Economic and Environmental Prospects - Suiker Akke, Wolfs Robert, Lucas Sandra, Salet Theo (2020-06)
Elastic Buckling and Plastic Collapse During 3D Concrete Printing - Sukontasukkul Piti, Panklum Kasidet, Maho Buchit, Banthia Nemkumar et al. (2021-12)
Effect of Synthetic Micro-Fiber and Viscosity-Modifying-Agent on Layer Deformation, Viscosity, and Open-Time of Cement Mortar for 3D Printing Application - Sun Junbo, Aslani Farhad, Lu Jenny, Wang Lining et al. (2021-06)
Fiber-Reinforced Lightweight Engineered Cementitious Composites for 3D Concrete Printing - Ting Guan, Tay Yi, Tan Ming (2021-04)
Experimental Measurement on the Effects of Recycled Glass-Cullets as Aggregates for Construction 3D Printing - Ungureanu Dragoș, Onuțu Cătălin, Isopescu Dorina, Țăranu Nicolae et al. (2023-06)
A Novel Approach for 3D Printing Fiber-Reinforced Mortars - Warsi Syed, Panda Biranchi, Biswas Pankaj (2023-12)
Exploring Fiber Addition Methods and Mechanical Properties of Fiber-Reinforced 3D Printed Concrete:
A Review - Wu Yun-Chen, Li Mo (2022-09)
Effects of Early-Age Rheology and Printing Time Interval on Late-Age Fracture Characteristics of 3D Printed Concrete - Xiao Jianzhuang, Hou Shaodan, Duan Zhenhua, Zou Shuai (2023-01)
Rheology of 3D Printable Concrete Prepared by Secondary Mixing of Ready-Mix Concrete - Yang Yekai, Wu Chengqing, Liu Zhongxian, Wang Hailiang et al. (2021-10)
Mechanical Anisotropy of Ultra-High-Performance Fiber-Reinforced Concrete for 3D Printing - Yue Hongfei, Zhang Zhuxian, Hua Sudong, Gao Yanan et al. (2023-09)
Solid Waste-Based Set-on-Demand 3D Printed Concrete:
Active Rheological-Control of Cement-Based Magneto-Rheological Fluids - Zhang Yu, Zhang Yunsheng, She Wei, Yang Lin et al. (2019-01)
Rheological and Hardened Properties of the High-Thixotropy 3D Printing Concrete - Zhu Binrong, Pan Jinlong, Nematollahi Behzad, Zhou Zhenxin et al. (2019-07)
Development of 3D Printable Engineered Cementitious Composites with Ultra-High Tensile Ductility for Digital Construction - Zhu Binrong, Pan Jinlong, Zhou Zhenxin, Cai Jingming (2021-04)
Mechanical Properties of Engineered Cementitious Composites Beams Fabricated by Extrusion-Based 3D - Zhu Lingli, Yao Jie, Zhao Yu, Ruan Wenqiang et al. (2023-09)
Printability and Early Mechanical Properties of Material-Composition Modified 3D Printing Engineered Cementitious Composites Based on the Response-Surface-Methodology
4 Citations
- Talukdar A., Belek Fialho Teixeira Müge, Fawzia Sabrina, Zahra Tatheer et al. (2026-01)
Investigation on the Fresh and Mechanical Properties of Low Carbon 3D Printed Concrete Incorporating Sugarcane Bagasse Ash and Microfibers - Alonso-Cañon Sara, Blanco-Fernandez Elena, Cuesta-Astorga Eva, Indacoechea-Vega Irune et al. (2025-09)
Selection of the Best 3D Printing High-Performance Mortars Using Multi-Criteria Analysis - Ding Tao, Dong Haining, Sikora Paweł, Lin Guan (2025-07)
3D Printed Concrete Reinforced with Flexible Fiber Reinforced Polymer Strips or Grids:
Concept and Bond Tests - Zafar Tayyab, Zafar Muhammad, Hojati Maryam (2025-07)
Exploring the 3D Printability of Engineered Cementitious Composites with Internal Curing for Resilient Construction in Arid Regions
BibTeX
@article{zat_schu_schm_frei.2025.RPoHPCRwMaTEo3PP,
author = "Tuani Zat and Sílvio Lisbôa Schuster and Ester Schmitt Duarte and Natália de Freitas Daudt and Robinson Carlos Dudley Cruz and Erich Davi Rodríguez",
title = "Rheological Properties of High-Performance Concrete Reinforced with Microfibers and Their Effects on 3D Printing Process",
doi = "10.1016/j.jobe.2025.112406",
year = "2025",
journal = "Journal of Building Engineering",
pages = "112406",
}
Formatted Citation
T. Zat, S. L. Schuster, E. S. Duarte, N. de Freitas Daudt, R. C. D. Cruz and E. D. Rodríguez, “Rheological Properties of High-Performance Concrete Reinforced with Microfibers and Their Effects on 3D Printing Process”, Journal of Building Engineering, p. 112406, 2025, doi: 10.1016/j.jobe.2025.112406.
Zat, Tuani, Sílvio Lisbôa Schuster, Ester Schmitt Duarte, Natália de Freitas Daudt, Robinson Carlos Dudley Cruz, and Erich Davi Rodríguez. “Rheological Properties of High-Performance Concrete Reinforced with Microfibers and Their Effects on 3D Printing Process”. Journal of Building Engineering, 2025, 112406. https://doi.org/10.1016/j.jobe.2025.112406.