Study on Mechanical Properties of In-Situ Printed Reinforced Concrete Wall with Core Column (2021-12)¶
Zhang Ying, Wan Zhiming, Wu Lei
Contribution - International Conference on Optoelectronic Materials and Devices, No. 12
Abstract
With the lack of manpower, the development of intelligent automation and the promotion of the concept of green environmental protection, 3D printed concrete technology has become a hot spot in the construction industry. Different from the traditional concrete construction technology, 3D printed concrete components can be printed and manufactured in-situ at the construction site. In order to explore the application possibility of 3D printing technology in in-situ printed components, this paper studies the axial compressive performance of in-situ printed core column reinforced concrete wall. The main research contents are as follows: In this paper, 12 pieces of in-situ printed core-column reinforced concrete walls are designed and produced, and the basic form of in-situ printed core column reinforced concrete walls is elaborated. Influencing factors such as the number of core columns, the stirrup configuration forms of core columns, reinforcement ratio and connection modes of transverse reinforcement are set. Axial compression performance experiment was carried out on the wall specimens to study the failure modes and mechanical performance of the in-situ printed core column wall under the action of axial load.
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7 References
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5 Citations
- Mercimek Ömer, Şahin Oğuzhan, Çelik Alper, Ozkan Ekinci Mehmet et al. (2025-08)
Structural Performance of Pre-Fabricated 3D Printed Concrete Walls:
Effect of Cold Joint, Axial Load and Load Type - Šána Vladimír, Litoš Jiří (2025-07)
Load-Bearing Capacity of the 3D Printed Concrete Structure Based on a Static Assessment and Load Test in Scale 1:1 - Warsi Syed, Panda Biranchi, Biswas Pankaj (2025-06)
Design of Earthquake-Resistant 3D Printed Concrete Wall Based on ACI 318-19:
Analytical Investigation and Numerical Modelling - Warsi Syed, Panda Biranchi, Biswas Pankaj (2024-11)
Structural Analysis of 3D Printed Concrete Walls Under Quasi-Static Cyclic Loading Using Composite Micro-Model - Zhang Daobo, Feng Peng, Zhou Peizhao, Xu Weiguo et al. (2023-06)
3D Printed Concrete Walls Reinforced with Flexible FRP Textile:
Automatic Construction, Digital Rebuilding, and Seismic Performance
BibTeX
@inproceedings{zhan_wan_wu.2021.SoMPoISPRCWwCC,
author = "Ying Zhang and Zhiming Wan and Lei Wu",
title = "Study on Mechanical Properties of In-Situ Printed Reinforced Concrete Wall with Core Column",
doi = "10.1117/12.2628445",
year = "2021",
pages = "12",
booktitle = "International Conference on Optoelectronic Materials and Devices",
editor = "Yuan Lu and Youlin Gu and Siting Chen",
}
Formatted Citation
Y. Zhang, Z. Wan and L. Wu, “Study on Mechanical Properties of In-Situ Printed Reinforced Concrete Wall with Core Column”, in International Conference on Optoelectronic Materials and Devices, 2021, p. 12. doi: 10.1117/12.2628445.
Zhang, Ying, Zhiming Wan, and Lei Wu. “Study on Mechanical Properties of In-Situ Printed Reinforced Concrete Wall with Core Column”. In International Conference on Optoelectronic Materials and Devices, edited by Yuan Lu, Youlin Gu, and Siting Chen, 12, 2021. https://doi.org/10.1117/12.2628445.