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Integrating reinforcement in digital fabrication with concrete: A review and classification framework

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journal contribution
posted on 2021-08-09, 08:07 authored by Viktor Mechtcherine, Richard BuswellRichard Buswell, Harald Kloft, Freek P. Bos, Norman Hack, Rob Wolfs, Jay Sanjayan, Behzad Nematollahi, Egor Ivaniuk, Tobias Neef
This article offers a comprehensive, systematic overview of the existing solutions for integrating reinforcement in digital concrete technologies with particular emphasis on Additive Manufacturing (AM) with concrete, also called 3D concrete printing (3DCP). While the functionalities of various types of reinforcement are briefly addressed, the major focus is on the integration process as such, i.e., on its technological aspects. On this basis a generic classification and process description outline has been developed for reinforcement integration, which is regarded as an extension of the RILEM process classification framework for Digital Fabrication with Concrete (DFC). In many instances, the integration occurs in a separate process step prior to or after concrete shaping. This holds true for all formative digital concrete shaping processes and for many 3DCP solutions. 3DCP approaches enable, however, integration of the reinforcement during concrete shaping as part of a single-step AM process in a simultaneous or contiguous manner, while placement of reinforcement is considered to be a sub-process.

Funding

German Research Foundation (Deutsche Forschungsgemeinschaft – DFG)

EPSRC Grant numbers EP/S031405/1 (Industrial Challenge Fund) and EP/P031420/1

Australian Research Council Linkage Infrastructure Grant LE170100168, Discovery Project Grant DP210101680 and Discovery Early Career Researcher Award DE180101587

History

School

  • Architecture, Building and Civil Engineering

Published in

Cement and Concrete Composites

Volume

119

Publisher

Elsevier

Version

  • AM (Accepted Manuscript)

Rights holder

© Elsevier

Publisher statement

This paper was accepted for publication in the journal Cement and Concrete Composites and the definitive published version is available at https://doi.org/10.1016/j.cemconcomp.2021.103964.

Acceptance date

2021-01-27

Publication date

2021-02-06

Copyright date

2021

ISSN

0958-9465

eISSN

1873-393X

Language

  • en

Depositor

Prof Richard Buswell. Deposit date: 5 August 2021

Article number

103964

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