Three-dimensional (3D) printing enables free-form construction without formwork; however, interlayer interfaces formed during layer-by-layer deposition act as weak planes that govern structural performance. This study presents a combined experimental and predictive investigation of interface normal and shear strengths of 3D-printed mortar under varying printing interval times and temperatures, considering compressive strength, age and initial setting time. Mortars with two strength classes were tested under normal and elevated temperature conditions. Results show that elevated temperature enhances early-age hydration and interface strength at short intervals but accelerates surface moisture loss and bond degradation at longer intervals. A key finding is that interlayer bond performance is governed by the printing interval relative to the initial setting time, providing a unified parameter for assessing interface quality. Based on regression analysis, empirical models are proposed to predict interface normal and shear strengths as functions of printing interval time, temperature, compressive strength, mortar age and initial setting time. The proposed models show good agreement with experimental results and provide a practical design-oriented framework for evaluating interlayer bond performance of 3D-printed mortar structures.
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Research Article|
June 29 2026
Interlayer bond strength models for three dimensional-printed mortar
Sirakan Seepim;
Sirakan Seepim
School of Civil Engineering and Technology, Sirindhorn International Institute of Technology,
Thammasat University
, Bangkok, Thailand
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Ganchai Tanapornraweekit
;
Construction and Maintenance Technology Research Center, School of Civil Engineering and Technology, Sirindhorn International Institute of Technology,
Thammasat University
, Bangkok, Thailand
Corresponding author Ganchai Tanapornraweekit (ganchai@siit.tu.ac.th)
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Somnuk Tangtermsirikul
;
Somnuk Tangtermsirikul
School of Civil Engineering and Technology, Sirindhorn International Institute of Technology,
Thammasat University
, Bangkok, Thailand
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Patiphat Jiramarootapong;
Patiphat Jiramarootapong
Cement and Green Solutions Business (CGS) SCG Cement Co., LTD
, Bangkok, Thailand
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Passarin Jongvisuttisun
;
Passarin Jongvisuttisun
Cement and Green Solutions Business (CGS) SCG Cement Co., LTD
, Bangkok, Thailand
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Chalermwut Snguanyat
Chalermwut Snguanyat
Cement and Green Solutions Business (CGS) SCG Cement Co., LTD
, Bangkok, Thailand
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Corresponding author Ganchai Tanapornraweekit (ganchai@siit.tu.ac.th)
Publisher: Emerald Publishing
Received:
April 22 2025
Accepted:
May 25 2026
Online ISSN: 1751-7702
Print ISSN: 0965-0911
© 2026 Emerald Publishing Limited
2026
Emerald Publishing Limited
Licensed re-use rights only
Proceedings of the Institution of Civil Engineers - Structures and Buildings 1–11.
Article history
Received:
April 22 2025
Accepted:
May 25 2026
Citation
Seepim S, Tanapornraweekit G, Tangtermsirikul S, Jiramarootapong P, Jongvisuttisun P, Snguanyat C (2026;), "Interlayer bond strength models for three dimensional-printed mortar". Proceedings of the Institution of Civil Engineers - Structures and Buildings, Vol. ahead-of-print No. ahead-of-print. https://doi.org/10.1680/jstbu.25.00073
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