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  5. Finite element analysis on structural behaviour of geopolymer reinforced concrete beam using Johnson-Cook Damage in ABAQUS
 
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Finite element analysis on structural behaviour of geopolymer reinforced concrete beam using Johnson-Cook Damage in ABAQUS

Journal
Archives of Metallurgy and Materials
ISSN
2300-1909
Date Issued
2022
Author(s)
Nurul Aida Mohd Mortar
Universiti Malaysia Perlis
Mohd. Mustafa Al Bakri Abdullah
Universiti Malaysia Perlis
Rafiza Abdul Razak
Universiti Malaysia Perlis
Kamarudin Hussin
Universiti Malaysia Perlis
Sanusi Hamat
Universiti Malaysia Perlis
Ahmad Humaizi Hilmi
Universiti Malaysia Perlis
Noorfifi Natasha Shahedan
Universiti Malaysia Perlis
Long Yuan Li
University of Plymouth
Ikmal Hakem A. Aziz
Universiti Malaysia Perlis
DOI
10.24425/amm.2022.141061
Abstract
This paper details a finite element analysis of the behaviour of Si-Al geopolymer concrete beam reinforced steel bar under an impulsive load and hyper velocity speed up to 1 km/s created by an air blast explosion. The initial torsion stiffness and ultimate torsion strength of the beam increased with increasing compressive strength and decreasing stirrup ratio. The study involves building a finite element model to detail the stress distribution and compute the level of damage, displacement, and cracks development on the geopolymer concrete reinforcement beam. This was done in ABAQUS, where a computational model of the finite element was used to determine the elasticity, plasticity, concrete tension damages, concrete damage plasticity, and the viability of the Johnson-Cook Damage method on the Si-Al geopolymer concrete. The results from the numerical simulation show that an increase in the load magnitude at the midspan of the beam leads to a percentage increase in the ultimate damage of the reinforced geopolymer beams failing in shear plastic deformation. The correlation between the numerical and experimental blasting results confirmed that the damage pattern accurately predicts the response of the steel reinforcement Si-Al geopolymer concrete beams, concluded that decreasing the scaled distance from 0.298 kg/m3 to 0.149 kg/m3 increased the deformation percentage.
Subjects
  • Fly ash geopolymer

  • Finite element analys...

  • Johnson cook damage

  • ABAQUS software

  • Geopolymer concrete

File(s)
Finite Element Analysis on Structural Behaviour of Geopolymer Reinforced Concrete Beam using Johnson-Cook Damage in ABAQUS.pdf (3.08 MB)
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Acquisition Date
Nov 19, 2024
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Acquisition Date
Nov 19, 2024
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