Modelling of 3D Concrete Printing Process (2022-11)¶
, , , Nguyen Kien,
Journal Article - Additive Manufacturing
Abstract
3D concrete printing (3DCP) offers solutions for affordable construction including cost minimisation, productivity improvement, and sustainability alignment, as well as being able to tailor products with complex design requirements. Various 3DCP techniques, printable materials, and computational design tools have been developed to meet the requirements of mechanical and structural properties as well as durability. Coupled with parametric design and numerical simulation approach, the 3DCP could enable further construction optimisation, and realisation of complex designs. While major effort is devoted to developing materials and mix designs, limited attention is given to the development of predictive modelling and design optimisation specifically for 3D printing of concrete/mortar from the fresh to the hardening states. The benefit of additive manufacturing in construction is often recognised by the building of highly complex structures obtained from the generative design or structural optimisation processes. Here, various constraints need to be considered, such as overhang angle, printing direction, anisotropic properties of concrete, and printing toolpath optimisation. Continuous improvement in non-deterministic/statistical or machine learning (ML) approach could also lead to the development of a future robust 3DCP simulation tool when data is scarce or limited. This work will provide a snapshot of the current state-of-the-art development of modelling and design optimisation tools for 3D concrete printing.
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A Path Towards SDGs:
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Self-Supporting Lamellae:
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On the Use of 3D Printing to Enhance the Thermal Performance of Building Envelope:
A Review - Baktheer Abedulgader, Claßen Martin (2024-07)
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Buildability of Complex 3D Printed Concrete Geometries Using Peridynamics - Birru Bizu, Rehman Atta, Kim Jung-Hoon (2024-06)
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Strategies Towards Large-Scale 3D Printing Without Size-Constraints - Zhao Hongyu, Wang Xiangyu, Sun Junbo, Wang Yufei et al. (2024-04)
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Evaluation of Aggregate-Distribution Heterogeneity in 3D Printed Concrete by Means of X-Ray CT - Yang Liuhua, Gao Yang, Chen Hui, Jiao Huazhe et al. (2024-04)
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3D Concrete Printing Using Computational Fluid Dynamics:
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Novel Digital Twin Architecture for 3D Concrete Printing in the AEC Industry - Dams Barrie, Chen Binling, Kaya Yusuf, Orr Lachlan et al. (2024-03)
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Developing a Data-Driven Filament-Shape-Prediction-Model for 3D Concrete Printing - Silveira Marcos, Wagner Juliana, Khanverdi Mohsen, Das Sreekanta (2024-02)
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Aspects of Waste-Material-Utilization and 3D Concrete Printer Development-Approach:
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Modeling Extrusion-Process and Layer-Deformation in 3D Concrete Printing via Smoothed Particle-Hydrodynamics - Kumar Lalit, Dey Dhrutiman, Panda Biranchi, Muthu Nelson (2024-01)
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Flexural Performance of 3D Printed Concrete Structure with Lattice-Infills - Liu Huawei, Liu Chao, Zhang Yamei, Bai Guoliang (2023-11)
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Inclined 3D Concrete Printing:
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BibTeX
@article{nguy_li_liu_nguy.2022.Mo3CPP,
author = "Vuong van Nguyen and Shuai Li and Junli Liu and Kien Nguyen and Jonathan Phuong Tran",
title = "Modelling of 3D Concrete Printing Process: A Perspective on Material and Structural Simulations",
doi = "10.1016/j.addma.2022.103333",
year = "2022",
journal = "Additive Manufacturing",
}
Formatted Citation
V. van Nguyen, S. Li, J. Liu, K. Nguyen and J. P. Tran, “Modelling of 3D Concrete Printing Process: A Perspective on Material and Structural Simulations”, Additive Manufacturing, 2022, doi: 10.1016/j.addma.2022.103333.
Nguyen, Vuong van, Shuai Li, Junli Liu, Kien Nguyen, and Jonathan Phuong Tran. “Modelling of 3D Concrete Printing Process: A Perspective on Material and Structural Simulations”. Additive Manufacturing, 2022. https://doi.org/10.1016/j.addma.2022.103333.