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Enhancing the Mechanical Properties of Historical Masonry Using Fiber-Reinforced Geopolymers
被引:4
|作者:
Dollente, Ithan Jessemar R.
[1
]
Valerio, Daniel Nichol R.
[2
]
Quiatchon, Pauline Rose J.
[1
]
Abulencia, Anabel B.
[1
]
Villoria, Ma. Beatrice D.
[1
]
Garciano, Lessandro Estelito O.
[2
]
Promentilla, Michael Angelo B.
[3
]
Guades, Ernesto J.
[4
]
Ongpeng, Jason Maximino C.
[2
]
机构:
[1] De La Salle Univ, Ctr Engn & Sustainable Dev Res, Manila 1004, Philippines
[2] De La Salle Univ, Dept Civil Engn, Manila 0922, Philippines
[3] De La Salle Univ, Dept Chem Engn, Manila 0922, Philippines
[4] Univ Guam, Dept Civil Engn, Mangilao, GU 96923 USA
来源:
关键词:
geopolymer;
fiber;
fiber-reinforcement;
alkali-activated;
cultural heritage;
ambient curing;
STEEL FIBERS;
CONCRETE;
BEHAVIOR;
AMBIENT;
CEMENT;
D O I:
10.3390/polym15041017
中图分类号:
O63 [高分子化学(高聚物)];
学科分类号:
070305 ;
080501 ;
081704 ;
摘要:
Current research into the production of sustainable construction materials for retrofitting and strengthening historic structures has been rising, with geopolymer technology being seen as an advantageous alternative to traditional concrete. Fiber reinforcement using this novel cementitious material involves a low embodied carbon footprint while ensuring cohesiveness with local materials. This study aims to develop fly ash-based geopolymers reinforced with six different types of fibers: polyvinyl alcohol, polypropylene, chopped basalt, carbon fiber, and copper-coated stainless steel. The samples are produced by mixing the geopolymer mortar in random distribution and content. Twenty-eight geopolymer mixes are evaluated through compressive strength, split-tensile strength, and modulus of elasticity to determine the fiber mix with the best performance compared with pure geopolymer mortar as a control. Polyvinyl alcohol and copper-coated stainless-steel fiber samples had considerably high mechanical properties and fracture toughness under applied tensile loads. However, the polypropylene fiber source did not perform well and had lower mechanical properties. One-way ANOVA verifies these results. Based on these findings, polyvinyl alcohol and stainless-steel fibers are viable options for fiber reinforcement in historical structures, and further optimization and testing are recommended before application as a reinforcement material in historic structures.
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页数:16
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