technologyinfrastructureTexas Tech University, Lubbock, Texas, USA • 2022

Concrete 3D Printed Stacked Wall

“A modular concrete printing system based on stackable cellular components enables the construction of larger architectural structures through assembly.”
About the project

Stacking Cells investigates how robotic concrete printing can be expanded through modular fabrication and assembly. Instead of printing a single continuous wall, the project develops a family of stackable components containing integrated cavities and niches.

Each module is designed around a continuous printing path that maximizes structural stability while simplifying fabrication. Once printed, the components are assembled into a larger architectural system resembling interlocking cellular blocks. The strategy enables the creation of larger structures while overcoming the dimensional constraints of robotic printing equipment.

The project demonstrates how additive manufacturing can be combined with assembly logic to create adaptable and scalable architectural systems.

Technical details
Material
Printed Concrete
Dimensions printed
1m x 0,8 m x 30cm
Process
2K Printing
Photo gallery
Credits
Architect / Designer
Hi-DARS Lab
Engineering
Associate Prof. Dr. Sina Mostafavi
Production
Hi-DARS Research Team
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