Work Breakdown Structure and Construction Process Framework for a Hybrid 3D-Printed Modular Building
Mustika Sari1, Mohammed Ali Berawi1, William Faustin Taswin2, Gunawan Saroji3, Perdana Miraj4
- Department of Civil and Environmental Engineering, Faculty of Engineering, Universitas Indonesia, Indonesia
- Center for Sustainable Infrastructure Development, Universitas Indonesia, Indonesia
- Department of Civil Engineering, Politeknik Negeri Bengkalis, Indonesia
- Design and Construction Management, Faculty of Architecture and the Built Environment, Delft University of Technology, Delft, Netherlands
Published in the Journal of Information Technology in Construction, volume 30, pages 1332 to 1353, September 2025, in the special issue Smart and Sustainable Built Environment (SASBE 2024), guest edited by Mahesh Babu Purushothaman, Ali GhaffarianHoseini, Amirhosein GhaffarianHoseini and Farzad Rahimian. DOI 10.36680/j.itcon.2025.054.
Abstract
Hybrid construction methods that combine 3D concrete printing (3DCP) and modular precast techniques have the potential to improve precision, reduce material waste, and increase automation in building construction. Despite this potential, the lack of defined workflows and activity definitions presents a challenge for practical application. Therefore, this study develops a Work Breakdown Structure (WBS) and a construction process framework to support planning and execution in hybrid 3D-printed modular construction through a systematic review and direct observation in a digital fabrication laboratory. The review identified construction work items for 3DCP and precast modular methods and revealed four distinct sequencing patterns. Among them, one pattern that coordinates robotic-assisted 3DCP and precast concrete fabrication in parallel was identified as the most aligned with current industry practice. A five-level WBS was developed based on this pattern to organize activities across offsite and onsite phases. The WBS then informed the development of a construction process framework that outlines activity sequencing, dependencies, and automation integration points throughout the construction stages. The framework illustrates how automation can support conventional modular workflows, including robotic gantry lifting and real-time extrusion monitoring. The findings provide a foundation for future research and serve as a practical reference for coordinating fabrication and assembly activities.
Keywords
Related Conference Paper
3D Printing Technology for Precast Concrete: A Business Process Perspective from Indonesian Construction Sector, SASBE 2024 proceedings, chapter 1.
