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id caadria2024_264
authors Kim, Il Hwan
year 2024
title 3D Concrete Printing Frame Structure in Granular Medium
doi https://doi.org/10.52842/conf.caadria.2024.3.263
source Nicole Gardner, Christiane M. Herr, Likai Wang, Hirano Toshiki, Sumbul Ahmad Khan (eds.), ACCELERATED DESIGN - Proceedings of the 29th CAADRIA Conference, Singapore, 20-26 April 2024, Volume 3, pp. 263–270
summary The field of architecture is experiencing an increase in demand for custom fabrication methods, driven by the advancements in digital design tools and techniques. However, in conventional concrete construction systems, achieving extensive customization often leads to high costs and prolonged fabrication times due to the complexities associated with formwork fabrication. This paper presents an alternative 3D concrete printing method named Concrete Printing in Granular Medium (CPGM). Unlike the current layered extrusion 3D printed concrete technology, CPGM extrudes concrete within a granular medium, which enables greater freedom in printable geometry without being limited by gravity constraints. The primary aim of CPGM is to facilitate the rapid fabrication of intricate concrete elements by removing the stacking process involved in layered extrusion. This paper outlines the design and fabrication workflow of the CPGM method and presents a case study involving creating a scaled model of a single-objective optimized concrete frame structure. Through proof-of-concept projects, the paper explores the potential benefits, current challenges, and future development of CPGM.
keywords Injection 3D Printed Concrete, Concrete Frame Structure, Optimized Concrete Structure, Rapid 3D Printing, Granular Particle 3D Printing
series CAADRIA
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