Lateral Load–Displacement Behaviors of Reinforced Geopolymer-Concrete Column Using Finite Element Analysis

Today the use of environmentally friendly building materials in construction is considerably important, such as geopolymer concrete. Geopolymer concrete uses by-product material, such as fly ash instead of cement. Some aggressive materials in the environment, such as seawater and soil with high sulf...

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Main Authors: Sungkono, Kukuh Kurniawan Dwi, Satyarno, Iman, Priyosulistyo, Henricus, Perdana, Indra
Format: Conference or Workshop Item
Language:English
Published: 2022
Subjects:
Online Access:https://repository.ugm.ac.id/282275/1/Sungkono%20et%20al.%20-%202022%20-%20Lateral%20Load%E2%80%93Displacement%20behaviors%20of%20reinforced%20.pdf
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author Sungkono, Kukuh Kurniawan Dwi
Satyarno, Iman
Priyosulistyo, Henricus
Perdana, Indra
author_facet Sungkono, Kukuh Kurniawan Dwi
Satyarno, Iman
Priyosulistyo, Henricus
Perdana, Indra
author_sort Sungkono, Kukuh Kurniawan Dwi
collection UGM
description Today the use of environmentally friendly building materials in construction is considerably important, such as geopolymer concrete. Geopolymer concrete uses by-product material, such as fly ash instead of cement. Some aggressive materials in the environment, such as seawater and soil with high sulfate content, attack ordinary reinforced concrete structures. In such aggressive environments, structures on the basis of geopolymer reinforced concrete are preferable because previous studies showed that geopolymer reinforced concrete has ability to survive in those corrosive environments. This paper discusses finite element analyses on a reinforced geopolymer concrete column to predict their lateral load–displacement behavior using ABAQUS software. Mechanical properties of geopolymer concrete such as stress–strain relation, modulus of elasticity, and Poisson Ratio need to be determined as an input in the finite element analyses. For the validation purpose of the analyses, a previous experimental test result of a reinforced geopolymer concrete column having a cross-section of 175 square mm, 1500 mm high and of slender type was used. Three types of eccentric load were examined. It is found that by appropriate determination of the geopolymer properties, the finite element analyses using ABAQUS can predict the lateral load–displacement behavior of the slender column significantly. © 2022, The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd.
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spelling oai:generic.eprints.org:2822752023-11-23T03:47:15Z https://repository.ugm.ac.id/282275/ Lateral Load–Displacement Behaviors of Reinforced Geopolymer-Concrete Column Using Finite Element Analysis Sungkono, Kukuh Kurniawan Dwi Satyarno, Iman Priyosulistyo, Henricus Perdana, Indra Civil Engineering not elsewhere classified Civil Engineering Engineering Today the use of environmentally friendly building materials in construction is considerably important, such as geopolymer concrete. Geopolymer concrete uses by-product material, such as fly ash instead of cement. Some aggressive materials in the environment, such as seawater and soil with high sulfate content, attack ordinary reinforced concrete structures. In such aggressive environments, structures on the basis of geopolymer reinforced concrete are preferable because previous studies showed that geopolymer reinforced concrete has ability to survive in those corrosive environments. This paper discusses finite element analyses on a reinforced geopolymer concrete column to predict their lateral load–displacement behavior using ABAQUS software. Mechanical properties of geopolymer concrete such as stress–strain relation, modulus of elasticity, and Poisson Ratio need to be determined as an input in the finite element analyses. For the validation purpose of the analyses, a previous experimental test result of a reinforced geopolymer concrete column having a cross-section of 175 square mm, 1500 mm high and of slender type was used. Three types of eccentric load were examined. It is found that by appropriate determination of the geopolymer properties, the finite element analyses using ABAQUS can predict the lateral load–displacement behavior of the slender column significantly. © 2022, The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2022 Conference or Workshop Item PeerReviewed application/pdf en https://repository.ugm.ac.id/282275/1/Sungkono%20et%20al.%20-%202022%20-%20Lateral%20Load%E2%80%93Displacement%20behaviors%20of%20reinforced%20.pdf Sungkono, Kukuh Kurniawan Dwi and Satyarno, Iman and Priyosulistyo, Henricus and Perdana, Indra (2022) Lateral Load–Displacement Behaviors of Reinforced Geopolymer-Concrete Column Using Finite Element Analysis. In: the 5th International Conference on Sustainable Civil Engineering Structures and Construction Materials. https://www.scopus.com/inward/record.uri?eid=2-s2.0-85128780276&doi=10.1007%2f978-981-16-7924-7_4&partnerID=40&md5=ca30facfc86b8045e4dce76e8525c5df
spellingShingle Civil Engineering not elsewhere classified
Civil Engineering
Engineering
Sungkono, Kukuh Kurniawan Dwi
Satyarno, Iman
Priyosulistyo, Henricus
Perdana, Indra
Lateral Load–Displacement Behaviors of Reinforced Geopolymer-Concrete Column Using Finite Element Analysis
title Lateral Load–Displacement Behaviors of Reinforced Geopolymer-Concrete Column Using Finite Element Analysis
title_full Lateral Load–Displacement Behaviors of Reinforced Geopolymer-Concrete Column Using Finite Element Analysis
title_fullStr Lateral Load–Displacement Behaviors of Reinforced Geopolymer-Concrete Column Using Finite Element Analysis
title_full_unstemmed Lateral Load–Displacement Behaviors of Reinforced Geopolymer-Concrete Column Using Finite Element Analysis
title_short Lateral Load–Displacement Behaviors of Reinforced Geopolymer-Concrete Column Using Finite Element Analysis
title_sort lateral load displacement behaviors of reinforced geopolymer concrete column using finite element analysis
topic Civil Engineering not elsewhere classified
Civil Engineering
Engineering
url https://repository.ugm.ac.id/282275/1/Sungkono%20et%20al.%20-%202022%20-%20Lateral%20Load%E2%80%93Displacement%20behaviors%20of%20reinforced%20.pdf
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