Structural behaviour of 3D printed concrete beams with various reinforcement strategies
| dc.contributor.affiliation | Departamento de Mecánica de los Medios Continuos y Teoría de Estructuras | |
| dc.contributor.affiliation | Escuela Técnica Superior de Ingeniería de Caminos, Canales y Puertos | |
| dc.contributor.author | Gebhard, Lukas | es_ES |
| dc.contributor.author | Mata Falcon, Jaime | |
| dc.contributor.author | Anton, Ana | es_ES |
| dc.contributor.author | Dillenburger, Benjamin | es_ES |
| dc.contributor.author | Kaufmann, Walter | es_ES |
| dc.contributor.funder | Swiss National Science Foundation | es_ES |
| dc.date.accessioned | 2025-04-01T09:41:35Z | |
| dc.date.available | 2025-04-01T09:41:35Z | |
| dc.date.issued | 2021-08-01 | es_ES |
| dc.description.abstract | [EN] 3D concrete printing (3DCP) offers many new possibilities. This technology could increase the productivity of the construction industry and reduce its environmental impact by producing optimised structures more efficiently. Despite significant developments in materials science, little effort has been put in developing reinforcement strategies compatible with 3DCP and on the characterisation of their structural behaviour. Consequently, 3DCD still lacks compliance with structural integrity requirements. This study presents an experimental investigation consisting of nine four-point bending tests on extrusion 3DCP beams reinforced with various types of reinforcement. As interlayer shear reinforcement, aligned end-hook fibres (0.3 and 0.6%) or steel cables (0.1%) placed between the layers of printed concrete were used. As longitudinal reinforcement, unbonded posttensioning and conventional bonded passive reinforcement were explored. The crack patterns and their associated kinematics were tracked using digital image correlation. The results show that the post-tensioned beams failed in a brittle manner due to the crushing of concrete in bending, with deformations localised in a few bending cracks. In the beams with conventional bonded longitudinal reinforcement, both bending as well as shear cracks were generated, and the brittle failure of the interlayer shear reinforcement limited the ultimate load. Estimations based on the measured crack kinematics show that the interlayer shear reinforcement carried most of the applied shear force. Based on these results, a simple mechanical model is developed to understand the mechanical behaviour and to pre-design the required amount of interlayer shear reinforcement. | en_EN |
| dc.description.accrualMethod | S | es_ES |
| dc.description.bibliographicCitation | Gebhard, L.; Mata Falcon, Jaime; Anton, A.; Dillenburger, B.; Kaufmann, W. (2021). Structural behaviour of 3D printed concrete beams with various reinforcement strategies. Engineering Structures. 240. https://doi.org/10.1016/j.engstruct.2021.112380 | es_ES |
| dc.description.sponsorship | The authors gratefully acknowledge the support of ETH students Jonathan Ensslin, Moritz Studer, JeanLuc Imhof and Vanessa Studer in the production, preparation and testing of the beams. The authors would like to acknowledge the collaboration with Dr. Lex Reiter, Dr. Timothy Wangler, and Prof. Dr. Robert J. Flatt from the chair of Physical Chemistry of Building Materials, ETH Zurich, for the development of the 3DCP mix design and the set ondemand printing process. The authors would also like to express their gratitude for their support to the technical teams of the IBK Structures Lab, the NCCR dfab Robotic Fabrication Lab, and the IfB Concrete Lab at ETH Zurich. This work was funded by the Swiss National Science Foundation, within the National Centre for Competence in Research in Digital Fabrication (project number 51NF40141853) . | es_ES |
| dc.description.volume | 240 | es_ES |
| dc.identifier.doi | 10.1016/j.engstruct.2021.112380 | es_ES |
| dc.identifier.issn | 0141-0296 | es_ES |
| dc.identifier.uri | https://riunet.upv.es/handle/10251/220139 | |
| dc.language | Inglés | es_ES |
| dc.publisher | Elsevier | es_ES |
| dc.relation.ispartof | Engineering Structures | es_ES |
| dc.relation.pasarela | S\521036 | es_ES |
| dc.relation.projectID | info:eu-repo/grantAgreement/SNSF//51NF40-141853/ | es_ES |
| dc.relation.publisherversion | https://doi.org/10.1016/j.engstruct.2021.112380 | es_ES |
| dc.rights | Reconocimiento (by) | es_ES |
| dc.rights.accessRights | Abierto | es_ES |
| dc.subject | Digital fabrication with concrete | es_ES |
| dc.subject | 3D concrete printing | es_ES |
| dc.subject | Reinforcement strategy | es_ES |
| dc.subject | Fibre reinforcement | es_ES |
| dc.subject | Interlayer shear reinforcement | es_ES |
| dc.subject | Experimental testing | es_ES |
| dc.title | Structural behaviour of 3D printed concrete beams with various reinforcement strategies | es_ES |
| dc.type | Artículo | es_ES |
| dc.type.version | info:eu-repo/semantics/publishedVersion | es_ES |
| dspace.entity.type | Publication | es_ES |
| person.identifier | 238731 | |
| person.identifier.orcid | 0000-0001-8701-4410 | |
| relation.isAuthorOfPublication | cde35b6d-1037-4b58-b556-e2feb2974f36 | |
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| upv.uuid | c154f8e8-4df7-4b63-b556-e97f59dc41ee | es_ES |
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