Triaxial Compression Testing on Early-Age Concrete for Numerical Analysis of 3D Concrete Printing (2019-06)¶
10.1016/j.cemconcomp.2019.103344
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Journal Article - Cement and Concrete Composites, Vol. 104
Abstract
In 3D concrete printing processes, two competing modes of failure are distinguished: material failure by plastic yielding, and elastic buckling failure through local or global instability. Structural analysis may be performed to assess if, and how, an object may fail during printing. This requires input in the form of transient material properties obtained from experimental testing on early age concrete. In this study, a custom triaxial compression test setup was developed, to characterize all essential parameters to assess failure by elastic buckling, and material yielding according to the Mohr-Coulomb criterion. The results of the triaxial tests were compared to simultaneously run unconfined uniaxial compression tests and ultrasonic wave transmission tests. The correlation between these experimental methods was reviewed. It was concluded that the triaxial compression test is an appropriate method to determine all relevant transient properties from one series of experiments. Subsequently, the experimental results were used for structural analyses of straight printed walls of different lengths with a Finite Element Modelling approach. These walls have been printed up to failure during print trials and the results were compared to the numerical predictions. The failure mode is predicted accurately by the numerical model, as is the critical height at which failure occurs for relatively small objects. For larger objects and/or longer printing processes, the quantitative agreement of the critical height with the print experiments could be improved. Two possible causes for this deviation are discussed.
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Digital Concrete Construction by Means of Additive Processes:
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Study on the Rheology and Buildability of 3D Printed Concrete with Recycled Coarse Aggregates - Nedjar Boumediene (2021-07)
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3D Concrete Printing:
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From Analytical Methods to Numerical Simulations:
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Extrusion Rheometer for 3D Concrete Printing - Bos Freek, Kruger Jacques, Lucas Sandra, Zijl Gideon (2021-04)
Juxtaposing Fresh Material-Characterisation-Methods for Buildability-Assessment of 3D Printable Cementitious Mortars - Marchment Taylor, Sanjayan Jay (2021-04)
Reinforcement Method for 3D Concrete Printing Using Paste-Coated Bar Penetrations - Bai Gang, Wang Li, Ma Guowei, Sanjayan Jay et al. (2021-03)
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3D Printing in the Construction Industry:
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Development of a Consistent Experimental Characterization-Strategy - Krishnaraja A., Guru K. (2021-02)
3D Printing Concrete:
A Review - Rubin Ariane, Hasse Jéssica, Repette Wellington (2021-01)
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Digital Design Computing and Modelling for 3D Concrete Printing - Daungwilailuk Totsawat, Pheinsusom Phoonsak, Pansuk Withit (2021-01)
Uniaxial Load Testing of Large-Scale 3D Printed Concrete Wall and Finite-Element-Model-Analysis - Jacquet Yohan, Picandet Vincent, Rangeard Damien, Perrot Arnaud (2020-12)
Gravity-Induced Flow to Characterize Rheological Properties of Printable Cement-Based Materials - Hou Shaodan, Duan Zhenhua, Xiao Jianzhuang, Ye Jun (2020-12)
A Review of 3D Printed Concrete:
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A Parametric Modelling-Strategy for the Numerical Simulation of 3D Concrete Printing with Complex Geometries - 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 - Davtalab Omid, Kazemian Ali, Yuan Xiao, Khoshnevis Behrokh (2020-10)
Automated Inspection in Robotic Additive Manufacturing Using Deep Learning for Layer Deformation Detection - Kruger Jacques, Zijl Gideon (2020-10)
A Compendious Review on Lack-of-Fusion in Digital Concrete Fabrication - Xiao Jianzhuang, Zou Shuai, Yu Ying, Wang Yu et al. (2020-09)
3D Recycled Mortar Printing:
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Fresh and Hardened Properties of Extrusion-Based 3D Printed Cementitious Materials:
A Review - Andersen Sebastian, Silva Wilson, Paegle Ieva, Nielsen Jens (2020-07)
Numerical Model Describing the Early-Age Behavior of 3D Printed Concrete:
Work in Progress - Grünewald Steffen, Schipper Roel (2020-07)
Transition from Fluid to Solid Concrete in the Flexible Mould Process - Hass Lauri, Bos Freek (2020-07)
Bending and Pull-Out Tests on a Novel Screw Type Reinforcement for Extrusion-Based 3D Printed Concrete - Suiker Akke, Wolfs Robert, Lucas Sandra, Salet Theo (2020-06)
Elastic Buckling and Plastic Collapse During 3D Concrete Printing - Roussel Nicolas, Spangenberg Jon, Wallevik Jon, Wolfs Robert (2020-06)
Numerical Simulations of Concrete Processing:
From Standard Formative Casting to Additive Manufacturing - Khan Mohammad, Sanchez Florence, Zhou Hongyu (2020-04)
3D Printing of Concrete:
Beyond Horizons - Hoffmann Marcin, Skibicki Szymon, Pankratow Paweł, Zieliński Adam et al. (2020-04)
Automation in the Construction of a 3D Printed Concrete Wall with the Use of a Lintel Gripper - Chen Yu, Figueiredo Stefan, Li Zhenming, Chang Ze et al. (2020-03)
Improving Printability of Limestone-Calcined-Clay-Based Cementitious Materials by Using Viscosity-Modifying Admixture - 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 - Ding Tao, Xiao Jianzhuang, Qin Fei, Duan Zhenhua (2020-03)
Mechanical Behavior of 3D Printed Mortar with Recycled Sand at Early-Ages - Casagrande Lorenzo, Esposito Laura, Menna Costantino, Asprone Domenico et al. (2020-02)
Effect of Testing Procedures on Buildability Properties of 3D Printable Concrete - Ma Guowei, Li Yanfeng, Wang Li, Zhang Junfei et al. (2020-01)
Real-Time Quantification of Fresh and Hardened Mechanical Property for 3D Printing Material by Intellectualization with Piezoelectric Transducers - Kruger Jacques, Cho Seung, Zeranka Stephan, Vintila Cristian et al. (2019-12)
3D Concrete Printer Parameter Optimization for High-Rate Digital Construction Avoiding Plastic Collapse - Wolfs Robert, Suiker Akke (2019-06)
Structural Failure During Extrusion-Based 3D Printing Processes
BibTeX
@article{wolf_bos_sale.2019.TCToEACfNAo3CP,
author = "Robert Johannes Maria Wolfs and Freek Paul Bos and Theo A. M. Salet",
title = "Triaxial Compression Testing on Early-Age Concrete for Numerical Analysis of 3D Concrete Printing",
doi = "10.1016/j.cemconcomp.2019.103344",
year = "2019",
journal = "Cement and Concrete Composites",
volume = "104",
}
Formatted Citation
R. J. M. Wolfs, F. P. Bos and T. A. M. Salet, “Triaxial Compression Testing on Early-Age Concrete for Numerical Analysis of 3D Concrete Printing”, Cement and Concrete Composites, vol. 104, 2019, doi: 10.1016/j.cemconcomp.2019.103344.
Wolfs, Robert Johannes Maria, Freek Paul Bos, and Theo A. M. Salet. “Triaxial Compression Testing on Early-Age Concrete for Numerical Analysis of 3D Concrete Printing”. Cement and Concrete Composites 104 (2019). https://doi.org/10.1016/j.cemconcomp.2019.103344.