Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/116283
Title: Multi-material 3D concrete printing : automated hybrid reinforcements using textile and strain-hardening cementitious composites
Authors: Teng, F 
Yang, M 
Yu, J 
Weng, Y 
Mechtcherine, V
Issue Date: Jan-2026
Source: Cement and concrete composites, Jan. 2026, v. 165, 106361
Abstract: 3D concrete printing (3DCP) faces challenges in reinforcement integration. This study proposes a multi-material printing strategy incorporating carbon textiles and highly flowable SHCC bonding agents as hybrid reinforcements. A custom three-channel nozzle was developed to enable synchronized mortar deposition and reinforcement placement with a demonstration in the physical world. The effects of textile grid size and reinforcement configuration on flexural performance were evaluated through four-point bending tests. Results showed that, compared to the reference group, the specimen with dense grids (5 mm) achieved a 305.6 % enhancement in flexural strength (from 3.6 MPa to 14.6 MPa) and a 3100 % improvement in ultimate deflection (0.2 mm–6.4 mm), respectively. When the specimen was fully reinforced at every interface, the energy dissipation was 383.3 % higher than that of the specimen only reinforced at the bottom interface. A theoretical model with 87.3 %–95.2 % accuracy was proposed. These findings demonstrate the effectiveness of the proposed strategy in simultaneously enhancing the flexural strength and ductility in 3DCP.
Keywords: 3D concrete printing
Bonding agent
Flexural properties
Multi-material printing
Strain-hardening cementitious composites
Textiles
Publisher: Pergamon Press
Journal: Cement and concrete composites 
ISSN: 0958-9465
EISSN: 1873-393X
DOI: 10.1016/j.cemconcomp.2025.106361
Appears in Collections:Journal/Magazine Article

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