Experimental study on tin slag polymer concrete strengthening under compression with metallic material confinement

Studies on the external strengthening of tin slag polymer concrete by fibre-reinforced plastic confinement have provided strength enhancement of tin slag polymer concrete up to 128% with carbon fibre-reinforced plastic confinement. However, the effect of metallic material confinement has yet to be s...

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Main Authors: Muhamad Soffi, Manda, Mohd Ruzaimi, Mat Rejab, Shukur, Abu Hassan, Mat Uzir, Wahit, Didik, Nurhadiyanto
Format: Article
Language:English
Published: MDPI 2023
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/44749/
http://umpir.ump.edu.my/id/eprint/44749/1/Experimental%20study%20on%20tin%20slag%20polymer%20concrete%20strengthening.pdf
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author Muhamad Soffi, Manda
Mohd Ruzaimi, Mat Rejab
Shukur, Abu Hassan
Mat Uzir, Wahit
Didik, Nurhadiyanto
author_facet Muhamad Soffi, Manda
Mohd Ruzaimi, Mat Rejab
Shukur, Abu Hassan
Mat Uzir, Wahit
Didik, Nurhadiyanto
author_sort Muhamad Soffi, Manda
building UMP Institutional Repository
collection Online Access
description Studies on the external strengthening of tin slag polymer concrete by fibre-reinforced plastic confinement have provided strength enhancement of tin slag polymer concrete up to 128% with carbon fibre-reinforced plastic confinement. However, the effect of metallic material confinement has yet to be studied. This article presents the experimental finding on tin slag polymer concrete strengthening through metallic material confinement under compressive loads. Machined mild steel metal tube has been employed to strengthen tin slag polymer concrete core in partial and fully confinement prior to compression testing. Through this study, compressive strength of tin slag polymer concrete short column has been enhanced with the metal tube confinement application from 59.19 MPa (unconfined) to 95.86 MPa (partial metal confinement) and 131.84 (full metal confinement) representing 61.95% and 122.74% of strength enhancement percentage. Material behaviour analysis through stress versus strain curves has revealed that the strain softening curve is modified by metal tube confinement before a fracture occurs on both partial and full metal confinement samples compared to the control sample (unconfined). In addition, the failure modes have indicated that the high ductility of metallic confinement material has effectively confined tin slag polymer concrete from sudden fracture where the metal tube in partial confinement indicates ductile expansion while the metal tube in full confinement has shown ductile crushing. In general, it was concluded that metallic material confinement on tin slag polymer concrete under compressive load has resulted in providing strength enhancement and modified the failure mode of tin slag polymer concrete. Finally, further research is recommended, especially by initiating numerical analysis to facilitate parametric studies on tin slag polymer concrete for structural material design.
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spelling ump-447492025-06-10T03:25:47Z http://umpir.ump.edu.my/id/eprint/44749/ Experimental study on tin slag polymer concrete strengthening under compression with metallic material confinement Muhamad Soffi, Manda Mohd Ruzaimi, Mat Rejab Shukur, Abu Hassan Mat Uzir, Wahit Didik, Nurhadiyanto TA Engineering (General). Civil engineering (General) TJ Mechanical engineering and machinery Studies on the external strengthening of tin slag polymer concrete by fibre-reinforced plastic confinement have provided strength enhancement of tin slag polymer concrete up to 128% with carbon fibre-reinforced plastic confinement. However, the effect of metallic material confinement has yet to be studied. This article presents the experimental finding on tin slag polymer concrete strengthening through metallic material confinement under compressive loads. Machined mild steel metal tube has been employed to strengthen tin slag polymer concrete core in partial and fully confinement prior to compression testing. Through this study, compressive strength of tin slag polymer concrete short column has been enhanced with the metal tube confinement application from 59.19 MPa (unconfined) to 95.86 MPa (partial metal confinement) and 131.84 (full metal confinement) representing 61.95% and 122.74% of strength enhancement percentage. Material behaviour analysis through stress versus strain curves has revealed that the strain softening curve is modified by metal tube confinement before a fracture occurs on both partial and full metal confinement samples compared to the control sample (unconfined). In addition, the failure modes have indicated that the high ductility of metallic confinement material has effectively confined tin slag polymer concrete from sudden fracture where the metal tube in partial confinement indicates ductile expansion while the metal tube in full confinement has shown ductile crushing. In general, it was concluded that metallic material confinement on tin slag polymer concrete under compressive load has resulted in providing strength enhancement and modified the failure mode of tin slag polymer concrete. Finally, further research is recommended, especially by initiating numerical analysis to facilitate parametric studies on tin slag polymer concrete for structural material design. MDPI 2023 Article PeerReviewed pdf en cc_by_4 http://umpir.ump.edu.my/id/eprint/44749/1/Experimental%20study%20on%20tin%20slag%20polymer%20concrete%20strengthening.pdf Muhamad Soffi, Manda and Mohd Ruzaimi, Mat Rejab and Shukur, Abu Hassan and Mat Uzir, Wahit and Didik, Nurhadiyanto (2023) Experimental study on tin slag polymer concrete strengthening under compression with metallic material confinement. Polymers, 15 (4). pp. 1-19. ISSN 2073-4360. (Published) https://doi.org/10.3390/polym15040817 https://doi.org/10.3390/polym15040817
spellingShingle TA Engineering (General). Civil engineering (General)
TJ Mechanical engineering and machinery
Muhamad Soffi, Manda
Mohd Ruzaimi, Mat Rejab
Shukur, Abu Hassan
Mat Uzir, Wahit
Didik, Nurhadiyanto
Experimental study on tin slag polymer concrete strengthening under compression with metallic material confinement
title Experimental study on tin slag polymer concrete strengthening under compression with metallic material confinement
title_full Experimental study on tin slag polymer concrete strengthening under compression with metallic material confinement
title_fullStr Experimental study on tin slag polymer concrete strengthening under compression with metallic material confinement
title_full_unstemmed Experimental study on tin slag polymer concrete strengthening under compression with metallic material confinement
title_short Experimental study on tin slag polymer concrete strengthening under compression with metallic material confinement
title_sort experimental study on tin slag polymer concrete strengthening under compression with metallic material confinement
topic TA Engineering (General). Civil engineering (General)
TJ Mechanical engineering and machinery
url http://umpir.ump.edu.my/id/eprint/44749/
http://umpir.ump.edu.my/id/eprint/44749/
http://umpir.ump.edu.my/id/eprint/44749/
http://umpir.ump.edu.my/id/eprint/44749/1/Experimental%20study%20on%20tin%20slag%20polymer%20concrete%20strengthening.pdf