Development of ductile concrete for visual sensor enabled 3D printing

Novel 3D-printing technology provides unlimited opportunities for various industries, including the building and construction industry. The 3D printing system can automatically and remotely dispense or spray advanced construction material, such as concrete material onto desired surfaces or sites and...

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Main Author: Lim, Joo Ee
Other Authors: Fu Yuguang
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2024
Subjects:
Online Access:https://hdl.handle.net/10356/177389
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1773892024-05-31T15:35:17Z Development of ductile concrete for visual sensor enabled 3D printing Lim, Joo Ee Fu Yuguang Qian Shunzhi School of Civil and Environmental Engineering SZQian@ntu.edu.sg, yuguang.fu@ntu.edu.sg Engineering 3D-printing technology in construction sector Novel 3D-printing technology provides unlimited opportunities for various industries, including the building and construction industry. The 3D printing system can automatically and remotely dispense or spray advanced construction material, such as concrete material onto desired surfaces or sites and to the specified dimensions, tolerances, features or patterns. However, traditional concrete materials used in 3D printing processes often exhibit brittleness and susceptibility to cracking, limiting their durability and structural integrity. As such, this dual Final Year Project aims to present the development of ductile concrete formulations coupled with visual sensor-enabled 3D printing applications for surface crack detection purposes. Through a combination of material engineering and advanced sensing technologies, the proposed approach aims to enhance the resilience and longevity of 3D printed structures while enabling close to real-time monitoring of crack formation and propagation. Key aspects of this research include the design and optimisation of ductile concrete mixtures, the integration of visual sensor systems for crack detection, and the validation of the proposed approach through experimental testing and analysis. The outcomes of this study have significant implications for the advancement of 3D printing technology in construction, offering improved performance, sustainability, and safety in future infrastructure projects. Bachelor's degree 2024-05-28T03:41:55Z 2024-05-28T03:41:55Z 2024 Final Year Project (FYP) Lim, J. E. (2024). Development of ductile concrete for visual sensor enabled 3D printing. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/177389 https://hdl.handle.net/10356/177389 en EM-12AB application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering
3D-printing technology in construction sector
spellingShingle Engineering
3D-printing technology in construction sector
Lim, Joo Ee
Development of ductile concrete for visual sensor enabled 3D printing
description Novel 3D-printing technology provides unlimited opportunities for various industries, including the building and construction industry. The 3D printing system can automatically and remotely dispense or spray advanced construction material, such as concrete material onto desired surfaces or sites and to the specified dimensions, tolerances, features or patterns. However, traditional concrete materials used in 3D printing processes often exhibit brittleness and susceptibility to cracking, limiting their durability and structural integrity. As such, this dual Final Year Project aims to present the development of ductile concrete formulations coupled with visual sensor-enabled 3D printing applications for surface crack detection purposes. Through a combination of material engineering and advanced sensing technologies, the proposed approach aims to enhance the resilience and longevity of 3D printed structures while enabling close to real-time monitoring of crack formation and propagation. Key aspects of this research include the design and optimisation of ductile concrete mixtures, the integration of visual sensor systems for crack detection, and the validation of the proposed approach through experimental testing and analysis. The outcomes of this study have significant implications for the advancement of 3D printing technology in construction, offering improved performance, sustainability, and safety in future infrastructure projects.
author2 Fu Yuguang
author_facet Fu Yuguang
Lim, Joo Ee
format Final Year Project
author Lim, Joo Ee
author_sort Lim, Joo Ee
title Development of ductile concrete for visual sensor enabled 3D printing
title_short Development of ductile concrete for visual sensor enabled 3D printing
title_full Development of ductile concrete for visual sensor enabled 3D printing
title_fullStr Development of ductile concrete for visual sensor enabled 3D printing
title_full_unstemmed Development of ductile concrete for visual sensor enabled 3D printing
title_sort development of ductile concrete for visual sensor enabled 3d printing
publisher Nanyang Technological University
publishDate 2024
url https://hdl.handle.net/10356/177389
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