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On-line and in-line quality assessment across all scale levels of 3D concrete printing

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journal contribution
posted on 2025-04-14, 10:52 authored by Rob Wolfs, Derk Bos, Jean-François Caron, Markus Gerke, Romain Mesnil, Richard BuswellRichard Buswell, Nicolas Ducoulombier, Norman Hack, Emmanuel Keita, Peter KinnellPeter Kinnell, Karam Mawas, Viktor Mechtcherine, Luiza Miranda, Dmitrii Sokolov, Jelle Versteege, Nicolas Roussel
3D Concrete printing requires much more elaborate quality control procedures compared to conventional concrete processing. Due to the various process steps, and the corresponding variation in material behaviour, time-, and length-scales, a single quality indicator and measurement technique (similar to the ‘slump test’ for traditional construction) cannot be selected. Instead, three families of quality indicators have been established: homogeneity during material production and deposition (quality variations), material evolution during printing (transient material behaviour), and macroscopic features and geometric conformity during printing and of the final object (geometry). For each family, quality assessment techniques which have been proven in other fields or for different applications, have been successfully transferred and adapted to the 3DCP process. In some cases, completely new methods have been developed. This paper aims to provide the state-of-the-art in such quality assessment methods, indicating high potential methods and research gaps across all scale levels of 3D concrete printing processes.

Funding

ISCF - Manufacturing integrated building components using digital hybrid Concrete Printing (HCP) technology : EP/S031405/1

History

School

  • Architecture, Building and Civil Engineering

Published in

Cement and Concrete Research

Volume

185

Issue

November 2024

Publisher

Elsevier Ltd

Version

  • VoR (Version of Record)

Rights holder

© The Author(s)

Publisher statement

This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).

Acceptance date

2024-08-19

Publication date

2024-08-27

Copyright date

2024

ISSN

0008-8846

Language

  • en

Depositor

Prof Richard Buswell. Deposit date: 30 October 2024

Article number

107646

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