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Vibration-Induced Active Rheology-Control for 3D Concrete Printing (2020-11)

10.1016/j.cemconres.2020.106293

 Sanjayan Jay,  Jayathilakage Roshan,  Rajeev Pathmanathan
Journal Article - Cement and Concrete Research, Vol. 140

Abstract

3D concrete printing, an emerging automation technology for construction, requires the concrete to be flowable during pumping and extrusion but firm immediately after layer deposition. This study investigated an active rheology control using vibration to achieve these opposing requirements. The effects of vibration frequency and acceleration on rheological parameters of concrete were studied with different levels of nanoparticles in the mix. It was found that extrusion pressure and yield stress show less sensitivity to the peak velocity of the vibration up to a certain level and then they both decrease beyond this level. Also, certain level of nanoparticles inclusion found to double the reduction in extrusion pressure and yield stress. Buildability studies using 3D printers were conducted to demonstrate the active rheology control using vibration. The mechanical properties of the printed structures were also found to have improved when vibration rheology control was used.

26 References

  1. Buswell Richard, Silva Wilson, Jones Scott, Dirrenberger Justin (2018-06)
    3D Printing Using Concrete-Extrusion:
    A Roadmap for Research
  2. Buswell Richard, Soar Rupert, Gibb Alistar, Thorpe Tony (2006-06)
    Freeform Construction:
    Mega-Scale Rapid Manufacturing for Construction
  3. Jayathilakage Roshan, Rajeev Pathmanathan, Sanjayan Jay (2019-09)
    Predication of Strength-Based Failure in Extrusion-Based 3D Concrete Printing
  4. Jayathilakage Roshan, Rajeev Pathmanathan, Sanjayan Jay (2020-01)
    Yield-Stress-Criteria to Assess the Buildability of 3D Concrete Printing
  5. Jayathilakage Roshan, Sanjayan Jay, Rajeev Pathmanathan (2019-01)
    Direct-Shear-Test for the Assessment of Rheological Parameters of Concrete for 3D Printing Applications
  6. Jayathilakage Roshan, Sanjayan Jay, Rajeev Pathmanathan (2020-07)
    Characterizing Extrudability for 3D Concrete Printing Using Discrete Element Simulations
  7. Jayathilakage Roshan, Sanjayan Jay, Rajeev Pathmanathan (2019-12)
    Comparison of Rheology Measurement Techniques Used in 3D Concrete Printing Applications
  8. Kruger Jacques, Zeranka Stephan, Zijl Gideon (2019-07)
    3D Concrete Printing:
    A Lower-Bound Analytical Model for Buildability-Performance-Quantification
  9. Marchment Taylor, Sanjayan Jay (2019-10)
    Mesh Reinforcing Method for 3D Concrete Printing
  10. Marchment Taylor, Sanjayan Jay, Xia Ming (2019-03)
    Method of Enhancing Inter-Layer Bond Strength in Construction-Scale 3D Printing with Mortar by Effective Bond Area Amplification
  11. 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
  12. Mechtcherine Viktor, Nerella Venkatesh, Kasten Knut (2013-12)
    Testing Pumpability of Concrete Using Sliding-Pipe Rheometer
  13. Muthukrishnan Shravan, Ramakrishnan Sayanthan, Sanjayan Jay (2020-07)
    Buildability of Geopolymer Concrete for 3D Printing with Microwave-Heating
  14. Panda Biranchi, Lim Jian, Tan Ming (2019-02)
    Mechanical Properties and Deformation Behavior of Early-Age Concrete in the Context of Digital Construction
  15. 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
  16. Perrot Arnaud, Mélinge Yannick, Estellé Patrice, Lanos Christophe (2009-04)
    Vibro-Extrusion:
    A New Forming Process for Cement-Based Materials
  17. Perrot Arnaud, Mélinge Yannick, Rangeard Damien, Micaelli Francesca et al. (2012-06)
    Use of Ram Extruder as a Combined Rheo-Tribometer to Study the Behavior of High-Yield-Stress Fluids at Low Strain-Rate
  18. Perrot Arnaud, Rangeard Damien, Pierre Alexandre (2015-02)
    Structural Build-Up of Cement-Based Materials Used for 3D Printing-Extrusion-Techniques
  19. Roussel Nicolas (2018-05)
    Rheological Requirements for Printable Concretes
  20. Schutter Geert, Lesage Karel (2018-09)
    Active Control of Properties of Concrete:
    A (P)Review
  21. Schutter Geert, Lesage Karel, Mechtcherine Viktor, Nerella Venkatesh et al. (2018-08)
    Vision of 3D Printing with Concrete:
    Technical, Economic and Environmental Potentials
  22. Suiker Akke (2018-01)
    Mechanical Performance of Wall Structures in 3D Printing Processes:
    Theory, Design Tools and Experiments
  23. Suiker Akke, Wolfs Robert, Lucas Sandra, Salet Theo (2020-06)
    Elastic Buckling and Plastic Collapse During 3D Concrete Printing
  24. Wolfs Robert, Bos Freek, Salet Theo (2018-02)
    Early-Age Mechanical Behaviour of 3D Printed Concrete:
    Numerical Modelling and Experimental Testing
  25. Wolfs Robert, Suiker Akke (2019-06)
    Structural Failure During Extrusion-Based 3D Printing Processes
  26. Zhou Xiangming, Li Zongjin, Fan Mizi, Chen Huapeng (2013-01)
    Rheology of Semi-Solid Fresh Cement-Pastes and Mortars in Orifice-Extrusion

77 Citations

  1. Kim Seung, Kim Jae (2025-12)
    Vibration-Assisted Rheological Control for 3D Printing of Precast Concrete Modules
  2. Li Liqing, Shi Zhenkun, Wang Lei, Sui Yi et al. (2025-12)
    3D Printing of Simulated Lunar Soil Geopolymer and Analysis of Its Weak Surface and Anisotropic Performance
  3. Xu Shuhao, Lin Xing-Tao, Chen Xiangsheng (2025-11)
    Numerical Investigation of Anisotropic in 3D Printed Concrete Specimens Considering the Effects of Weak Interfaces and Pore-Induced Defects
  4. Foulki Rida, Mesoudy Mouad, Cherkaoui Khalid (2025-10)
    Numerical and Theoretical Analysis of Pumping and Extrusion in 3D Concrete Printing
  5. Yang Rijiao, Xu Chengji, You Xiufei, Li Xinze et al. (2025-09)
    Saddle Stitching-Enabled Interfacial Toughening in 3D Printed Concrete
  6. Nasr Ahmed, Wang Jiyuan, Duan Zhenhua, Deng Qi et al. (2025-09)
    Assessing the Visibility and Impact of Recycled High-Density Polyethylene Fibers in 3D-Printed Cementitious Composites
  7. Xu Bin, Sun Zhaoyang, Sun Ming, Chen Binmeng (2025-09)
    Realizing Rheological Manipulation by Adjusting Initiator Concentrations for In-Situ Polymerization:
    Towards 3D Concrete Printing Applications
  8. Yang Rijiao, Xu Chengji, Fang Sen, Li Xinze et al. (2025-07)
    Mechanistic Insights into Microstructural Changes Caused by Stapling in Extrusion-Based 3D Printed Concrete (3DPC)
  9. Li Qiyan, Su Anshuang, Gao Xiaojian (2025-06)
    Improvement of Interlayer Performance of 3D Printable Magnesium Oxysulfate Cement-Based Materials by Carbonation Curing
  10. Gasmi Abrar, Guessasma Mohamed, Davidovits Ralph, Pélegris Christine (2025-06)
    Unveiling Additive Effects in 3D Printed Geopolymer Composites:
    A Multi-Scale Analysis Coupling Rheological Insights and CFD-Optimized Deposition
  11. Girskas Giedrius, Kligys Modestas (2025-06)
    3D Concrete Printing Review:
    Equipment, Materials, Mix Design, and Properties
  12. Si Wen, Khan Mehran, McNally Ciaran (2025-06)
    A Comprehensive Review of Rheological Dynamics and Process Parameters in 3D Concrete Printing
  13. Liu Qiong, Singh Amardeep, Wang Qiming, Qifeng Lyu (2025-05)
    3D-Printed Application in Concretes
  14. Xiong Baocheng, Liu Huanbao, Nie Ping, Li Xiaoxi et al. (2025-04)
    Effect of Different Surface Modification Methods of Small Particle Size Recycled Rubber Powder on Mechanical Properties of 3D Printed Concrete
  15. Li Qiyan, Wen Xiaodong, Gao Xiaojian (2025-02)
    Rheological and Mechanical Properties of 3D-Printable Magnesium-Oxysulfate-Cements
  16. Nasr Ahmed, Duan Zhenhua, Singh Amardeep, Deng Qi et al. (2025-02)
    Fresh Properties and Rheological Behavior of 3D-Printed Cementitious Composites Incorporating Recycled PVC and Nylon Fibers:
    An Experimental Approach
  17. Wang Hailong, Shen Wenbin, Sun Xiaoyan, Song Xinlei et al. (2025-01)
    Influences of Particle-Size on the Performance of 3D Printed Coarse Aggregate Concrete:
    Experiment, Microstructure, and Mechanism Analysis
  18. Khan Mirza, Ahmed Aayzaz, Ali Tariq, Qureshi Muhammad et al. (2024-12)
    Comprehensive Review of 3D Printed Concrete, Life Cycle Assessment, AI and ML Models:
    Materials, Engineered Properties and Techniques for Additive Manufacturing
  19. Sun Zhaoyang, Zhao Yuyang, Hou Dongshuai, Li Zongjin et al. (2024-11)
    Rheology-Control of Cement-Paste by In-Situ Polymerization for 3D Printing Applications
  20. 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
  21. Chen Yidong, Zhang Yunsheng, Quan Hongzhu, Liu Cheng et al. (2024-10)
    Early-Age Time-Dependent Mechanical Properties of 3D Printed Concrete with Coarse Aggregates
  22. Cai Jianguo, Wang Jingsong, Zhang Qian, Du Caixia et al. (2024-10)
    State of the Art of Mechanical Properties of 3D Printed Concrete
  23. An Ning, Wang Huai, Le Liu, Li Shuo et al. (2024-10)
    Real-Time Monitoring of Extrudability and Buildability in 3D Concrete Printing Based on Target Detection Method
  24. Zhan Yiyuan, Lesage Karel, Schutter Geert (2024-09)
    Mechanical Properties of 3D Printable Responsive Cement Mortar After Magnetic Intervention
  25. Ting Guan, Tay Yi, Quah Tan, Tan Ming et al. (2024-09)
    Sustainable Support-Material for Overhang Printing in 3D Concrete Printing Technology
  26. Ding Yao, Liu Jiepeng, Ou Xingjian, Nishiwaki Tomoya et al. (2024-08)
    3D Printing Hybrid-Fiber-Reinforced Engineered Cementitious Composites:
    Feasibility in Long-Open-Time Applications
  27. Xiong Baocheng, Nie Ping, Liu Huanbao, Li Xiaoxi et al. (2024-08)
    Evaluation and Optimization of Micro-Calcium-Carbonate-Modified 3D Printed Rubber-Crumb Concrete
  28. Sovetova Meruyert, Calautit John (2024-07)
    Design, Calibration and Performance Evaluation of a Small-Scale 3D Printer for Accelerating Research in Additive Manufacturing in Construction
  29. Zhong Kuangnan, Huang Kaiyun, Liu Zhichao, Wang Fazhou et al. (2024-07)
    CO2-Driven Additive Manufacturing of Sustainable Steel-Slag-Mortars
  30. He Lewei, Chen Bingzhi, Liu Qimin, Chen Hao et al. (2024-07)
    A Quasi-Exponential Distribution of Interfacial Voids and Its Effect on the Inter-Layer Strength of 3D Printed Concrete
  31. Ramesh Akilesh, Rajeev Pathmanathan, Xu Shanqing, Sanjayan Jay et al. (2024-06)
    Impact Response of Textile-Reinforced 3D Printed Concrete Panels
  32. Gu Yucun, Khayat Kamal (2024-06)
    Effect of Superabsorbent Polymer on 3D Printing Characteristics as Rheology-Modified-Agent
  33. Ramesh Akilesh, Rajeev Pathmanathan, Sanjayan Jay, Mechtcherine Viktor (2024-06)
    In-Process Textile Reinforcement Method for 3D Concrete Printing and Its Structural Performance
  34. Razzaghian Ghadikolaee Mehrdad, Pan Zhu, Cerro-Prada Elena, Korayem Asghar (2024-06)
    Fresh and Hardened Properties of 3D Printing Mortar Modified by Halloysite-Nanotube
  35. Gu Yucun, Zheng Shuyi, Ma Hongyan, Long Wujian et al. (2024-05)
    Effect of Absorption Kinetics of Superabsorbent Polymers on Printability and Inter-Layer Bond of 3D Printing Concrete
  36. Jiang Wei, Li Wenqian, Chen Xi (2024-05)
    An Extended Numerical Model of the First Exothermic Peak for Three Dimensional Printed Cement-Based Materials
  37. Yang Liuhua, Gao Yang, Chen Hui, Jiao Huazhe et al. (2024-04)
    3D Printing Concrete Technology from a Rheology Perspective:
    A Review
  38. Xiong Baocheng, Nie Ping, Liu Huanbao, Li Xiaoxi et al. (2024-03)
    Optimization of Fiber-Reinforced Lightweight Rubber-Concrete Mix-Design for 3D Printing
  39. Ramesh Akilesh, Rajeev Pathmanathan, Sanjayan Jay (2024-02)
    Bond-Slip Behavior of Textile-Reinforcement in 3D Printed Concrete
  40. Ahi Oğulcan, Ertunç Özgür, Bundur Zeynep, Bebek Özkan (2024-02)
    Automated Flow-Rate-Control of Extrusion for 3D Concrete Printing Incorporating Rheological Parameters
  41. Carvalho Ivo, Melo Abcael, Melo Carlos, Brito Mateus et al. (2023-12)
    Evaluation of the Effect of Rubber-Waste-Particles on the Rheological and Mechanical Properties of Cementitious Materials for 3D Printing
  42. Gao Huaxing, Chen Yuxuan, Chen Qian, Yu Qingliang (2023-11)
    Thermal and Mechanical Performance of 3D Printing Functionally Graded Concrete:
    The Role of SAC on the Rheology and Phase Evolution of 3DPC
  43. Şahin Hatice, Mardani Ali (2023-10)
    How Does Rheological Behavior Affect the Inter-Layer Bonding Strength of 3DPC Mixtures?
  44. Mallikarjuna Balichakra, Hareeswar M., Sharath P. (2023-09)
    Applications of Additive Manufacturing in Construction and Building Industries
  45. 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
  46. Liu Yi, Wang Li, Yuan Qiang, Peng Jianwei (2023-09)
    Effect of Coarse Aggregate on Printability and Mechanical Properties of 3D Printed Concrete
  47. 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
  48. Chen Mingxu, Jin Yuan, Sun Keke, Wang Shoude et al. (2023-08)
    Study on the Durability of 3D Printed Calcium-Sulphoaluminate Cement-Based Materials Related to Rheology-Control
  49. Zhang Nan, Sanjayan Jay (2023-08)
    Surfactants to Enable Quick Nozzle Mixing in 3D Concrete Printing
  50. Rajeev Pathmanathan, Ramesh Akilesh, Navaratnam Satheeskumar, Sanjayan Jay (2023-04)
    Using Fiber Recovered from Face Mask Waste to Improve Printability in 3D Concrete Printing
  51. Chen Hao, Zhang Daobo, Chen Peng, Li Ning et al. (2023-03)
    A Review of the Extruder System Design for Large-Scale Extrusion-Based 3D Concrete Printing
  52. Cui Dong, Wu Yingxuan, Xie Xiaoying, Tian Guanfei et al. (2023-03)
    Investigation on the Micro-Structure of a 3D Printed Mortar Through a Novel Leaching-Subsidiary Tomography
  53. Ishida Takato, Nakada Kiyofumi (2023-02)
    Review of Rheology in Cement-Based Materials and Its Application to 3D Printing Using Concrete
  54. Arunothayan Arun, Nematollahi Behzad, Khayat Kamal, Ramesh Akilesh et al. (2022-11)
    Rheological Characterization of Ultra-High-Performance Concrete for 3D Printing
  55. Salaimanimagudam M., Jayaprakash Jaganathan (2022-11)
    Optimum Selection of Reinforcement, Assembly, and Formwork System for Digital Fabrication Technique in Construction Industry:
    A Critical Review
  56. Qaidi Shaker, Yahia Ammar, Tayeh B., Unis H. et al. (2022-10)
    3D Printed Geopolymer Composites:
    A Review
  57. Boddepalli Uday, Panda Biranchi, Gandhi Indu (2022-09)
    Rheology and Printability of Portland-Cement-Based Materials:
    A Review
  58. Medicis Carolina, Gonzalez Sergio, Alvarado Yezid, Vacca Hermes et al. (2022-09)
    Mechanical Performance of Commercially Available Premix UHPC-Based 3D Printable Concrete
  59. He Lewei, Li Hua, Chow Wai, Zeng Biqing et al. (2022-09)
    Increasing the Inter-Layer Strength of 3D Printed Concrete with Tooth-Like Interface:
    An Experimental and Theoretical Investigation
  60. Jayathilakage Roshan, Rajeev Pathmanathan, Sanjayan Jay (2022-08)
    Rheometry for Concrete 3D Printing:
    A Review and an Experimental Comparison
  61. Ahmed Ghafur, Askandar Nasih, Jumaa Ghazi (2022-07)
    A Review of Large-Scale 3DCP:
    Material-Characteristics, Mix-Design, Printing-Process, and Reinforcement-Strategies
  62. Jin Yuan, Xu Jiabin, Li Yali, Zhao Zhihui et al. (2022-06)
    Rheological Properties, Shape Stability and Compressive Strength of 3D Printed Colored Cement Composites Modified by Needle-Like Pigment
  63. 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
  64. Yang Rijiao, Zeng Qiang, Peng Yu, Wang Hailong et al. (2022-05)
    Anomalous Matrix and Inter-Layer Pore-Structure of 3D Printed Fiber-Reinforced Cementitious Composites
  65. Chen Yu, Chang Ze, He Shan, Çopuroğlu Oğuzhan et al. (2022-04)
    Effect of Curing Methods During a Long Time-Gap Between Two Printing Sessions on the Inter-Layer Bonding of 3D Printed Cementitious Materials
  66. Chen Mingxu, Li Haisheng, Yang Lei, Wang Shoude et al. (2022-03)
    Rheology and Shape-Stability-Control of 3D Printed Calcium-Sulphoaluminate-Cement Composites Containing Paper-Milling-Sludge
  67. Jiang Zhengwu, Yang Qian, Zhu Yanmei, Zhang Yi et al. (2022-03)
    Evaluating the Stiffening Effect of CSA and Sodium Carbonate on the Printability of OPC Mortar
  68. Dey Dhrutiman, Srinivas Dodda, Panda Biranchi, Suraneni Prannoy et al. (2022-02)
    Use of Industrial Waste-Materials for 3D Printing of Sustainable Concrete:
    A Review
  69. Feys Dimitri, Schutter Geert, Fataei Shirin, Martys Nicos et al. (2022-01)
    Pumping of Concrete:
    Understanding a Common Placement Method with Lots of Challenges
  70. Şahin Hatice, Mardani Ali (2021-12)
    Assessment of Materials, Design Parameters and Some Properties of 3D Printing Concrete Mixtures:
    A State of the Art Review
  71. Pattaje Sooryanarayana Karthik, Hawkins Kathleen, Stynoski Peter, Lange David (2021-11)
    Controlling Three-Dimensional-Printable Concrete with Vibration
  72. Lee Hojae, Seo Eun-A, Kim Won-Woo, Moon Jae-Heum (2021-10)
    Experimental Study on Time-Dependent Changes in Rheological Properties and Flow-Rate of 3D Concrete Printing Materials
  73. Wang Li, Ma Hui, Li Zhijian, Ma Guowei et al. (2021-07)
    Cementitious Composites Blending with High Belite-Sulfoaluminate and Medium-Heat Portland Cements for Large-Scale 3D Printing
  74. Rehman Atta, Kim Jung-Hoon (2021-07)
    3D Concrete Printing:
    A Systematic Review of Rheology, Mix Designs, Mechanical, Microstructural, and Durability Characteristics
  75. Muthukrishnan Shravan, Ramakrishnan Sayanthan, Sanjayan Jay (2021-06)
    Technologies for Improving Buildability in 3D Concrete Printing
  76. Jayathilakage Roshan, Rajeev Pathmanathan, Sanjayan Jay (2021-05)
    Extrusion Rheometer for 3D Concrete Printing
  77. Wang Li, Liu Yi, Yang Yu, Li Yanfeng et al. (2021-04)
    Bonding Performance of 3D Printing Concrete with Self-Locking Interfaces Exposed to Compression-Shear and Compression-Splitting Stresses

BibTeX
@article{sanj_jaya_raje.2021.VIARCf3CP,
  author            = "Jay Gnananandan Sanjayan and Roshan I. Jayathilakage and Pathmanathan Rajeev",
  title             = "Vibration-Induced Active Rheology-Control for 3D Concrete Printing",
  doi               = "10.1016/j.cemconres.2020.106293",
  year              = "2021",
  journal           = "Cement and Concrete Research",
  volume            = "140",
}
Formatted Citation

J. G. Sanjayan, R. I. Jayathilakage and P. Rajeev, “Vibration-Induced Active Rheology-Control for 3D Concrete Printing”, Cement and Concrete Research, vol. 140, 2021, doi: 10.1016/j.cemconres.2020.106293.

Sanjayan, Jay Gnananandan, Roshan I. Jayathilakage, and Pathmanathan Rajeev. “Vibration-Induced Active Rheology-Control for 3D Concrete Printing”. Cement and Concrete Research 140 (2021). https://doi.org/10.1016/j.cemconres.2020.106293.