Advances in Materials Research
Volume 13, Number 5, 2024, pages 355-374
DOI: 10.12989/amr.2024.13.5.355
Analytical model of stress-strain curve for foamed cellular concrete in compression
Facundo A. Retamal and Viviana C. Rougier
Abstract
Several mathematical models describe the compressive behaviour of different types of concretes, but no
specific one for foamed cellular concrete (FCC) has been developed. In this work, simple compression tests on FCC
specimens of different mixes were conducted to study this material's compression behaviour curve until failure. Using continuous load and displacement measurement equipment, it was possible to obtain stress-strain curves up to peak for FCC of different strengths (from 1.20 to 47.34 MPa). Elastic modulus, compressive strength and failure strain values were also determined. Through the analysis of the mentioned curves, a mathematical model of them was obtained, through which it is possible to describe the compression behaviour of FCC up to failure. The comparison between the predicted curve against experimental data shows the effectiveness of the proposed model.
Key Words
experimental campaign; foamed cellular concrete; mathematical model development; porosity; strength prediction model
Address
Computational Mechanics and Structures Research Group (GIMCE), Civil Engineering Department, C. del Uruguay Regional Faculty (FRCU), National Technological University (UTN), Argentina