Effect of granite fly ash on mechanical properties of basalt and glass fiber reinforced polymer composite / Mohd Azrul Jaafar ... [et al.]
The granite processing industry generates a substantial volume of residual granite waste daily. This residue is collected through a filtration process during the drying and heating stages of concrete mixture production. Utilizing this residue, known as granite fly ash (GD), offers a promising avenue...
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my.uitm.ir.1013372024-09-03T22:29:46Z https://ir.uitm.edu.my/id/eprint/101337/ Effect of granite fly ash on mechanical properties of basalt and glass fiber reinforced polymer composite / Mohd Azrul Jaafar ... [et al.] jmeche Jaafar, Mohd Azrul Abdullah, Shahrul Azam Jumahat, Aidah Hashim, Ummu Raihanah Muslim, Mohamad Asrofi Raja Ahsan Sha, Raja Mazuir Raymond Siew, Teng Loy Tensile architecture Granite The granite processing industry generates a substantial volume of residual granite waste daily. This residue is collected through a filtration process during the drying and heating stages of concrete mixture production. Utilizing this residue, known as granite fly ash (GD), offers a promising avenue for mitigating adverse effects due to this waste material. The present study undertakes an experimental investigation into the potential utilization of granite fly ash as a filler to enhance the mechanical properties of basalt/glass composites (BFRC/GFRC). The research focuses on assessing the density and tensile characteristics of the developed fibre-reinforced polymer (FRP) composites. Composite samples were fabricated by incorporating GD at varying loadings, i.e., 1 wt.%, 3 wt.%, and 5 wt.%. The FRP laminates were produced using hand lay-up and vacuum silicon mold curing techniques. The outcomes show a slight increase in density, in which a maximum of 7% increment at 5 wt% of GD in BFRC. Meanwhile, tensile properties displayed significant enhancements, especially FRP with 3 wt.% GD content, for both BFRC and GFRC. Notably, the addition of 1 wt.% GD resulted in a 9% increase in tensile strength and a substantial 27% increase in modulus for the BFRC composite. In summary, the study underscores the advantageous influence of GD incorporation, particularly within the 1 wt.%, 3 wt.%, and 5 wt.%, on the mechanical properties of both BFRC and GFRC composites. UiTM Press 2024-09 Article PeerReviewed text en https://ir.uitm.edu.my/id/eprint/101337/1/101337.pdf Effect of granite fly ash on mechanical properties of basalt and glass fiber reinforced polymer composite / Mohd Azrul Jaafar ... [et al.]. (2024) Journal of Mechanical Engineering (JMechE) <https://ir.uitm.edu.my/view/publication/Journal_of_Mechanical_Engineering_=28JMechE=29/>, 21 (3): 13. pp. 215-229. ISSN 1823-5514 ; 2550-164X |
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Tensile architecture Granite Jaafar, Mohd Azrul Abdullah, Shahrul Azam Jumahat, Aidah Hashim, Ummu Raihanah Muslim, Mohamad Asrofi Raja Ahsan Sha, Raja Mazuir Raymond Siew, Teng Loy Effect of granite fly ash on mechanical properties of basalt and glass fiber reinforced polymer composite / Mohd Azrul Jaafar ... [et al.] |
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The granite processing industry generates a substantial volume of residual granite waste daily. This residue is collected through a filtration process during the drying and heating stages of concrete mixture production. Utilizing this residue, known as granite fly ash (GD), offers a promising avenue for mitigating adverse effects due to this waste material. The present study undertakes an experimental investigation into the potential utilization of granite fly ash as a filler to enhance the mechanical properties of basalt/glass composites (BFRC/GFRC). The research focuses on assessing the density and tensile characteristics of the developed fibre-reinforced polymer (FRP) composites. Composite samples were fabricated by incorporating GD at varying loadings, i.e., 1 wt.%, 3 wt.%, and 5 wt.%. The FRP laminates were produced using hand lay-up and vacuum silicon mold curing techniques. The outcomes show a slight increase in density, in which a maximum of 7% increment at 5 wt% of GD in BFRC. Meanwhile, tensile properties displayed significant enhancements, especially FRP with 3 wt.% GD content, for both BFRC and GFRC. Notably, the addition of 1 wt.% GD resulted in a 9% increase in tensile strength and a substantial 27% increase in modulus for the BFRC composite. In summary, the study underscores the advantageous influence of GD incorporation, particularly within the 1 wt.%, 3 wt.%, and 5 wt.%, on the mechanical properties of both BFRC and GFRC composites. |
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Article |
author |
Jaafar, Mohd Azrul Abdullah, Shahrul Azam Jumahat, Aidah Hashim, Ummu Raihanah Muslim, Mohamad Asrofi Raja Ahsan Sha, Raja Mazuir Raymond Siew, Teng Loy |
author_facet |
Jaafar, Mohd Azrul Abdullah, Shahrul Azam Jumahat, Aidah Hashim, Ummu Raihanah Muslim, Mohamad Asrofi Raja Ahsan Sha, Raja Mazuir Raymond Siew, Teng Loy |
author_sort |
Jaafar, Mohd Azrul |
title |
Effect of granite fly ash on mechanical properties of basalt and glass fiber reinforced polymer composite / Mohd Azrul Jaafar ... [et al.] |
title_short |
Effect of granite fly ash on mechanical properties of basalt and glass fiber reinforced polymer composite / Mohd Azrul Jaafar ... [et al.] |
title_full |
Effect of granite fly ash on mechanical properties of basalt and glass fiber reinforced polymer composite / Mohd Azrul Jaafar ... [et al.] |
title_fullStr |
Effect of granite fly ash on mechanical properties of basalt and glass fiber reinforced polymer composite / Mohd Azrul Jaafar ... [et al.] |
title_full_unstemmed |
Effect of granite fly ash on mechanical properties of basalt and glass fiber reinforced polymer composite / Mohd Azrul Jaafar ... [et al.] |
title_sort |
effect of granite fly ash on mechanical properties of basalt and glass fiber reinforced polymer composite / mohd azrul jaafar ... [et al.] |
publisher |
UiTM Press |
publishDate |
2024 |
url |
https://ir.uitm.edu.my/id/eprint/101337/1/101337.pdf https://ir.uitm.edu.my/id/eprint/101337/ |
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