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Exploration of Fiber-Reinforced Geopolymer Mortars Containing Recycled Aggregates and Marble Powder

dc.contributor.authorYilmaz, Arin
dc.contributor.authorErguen, Seckin
dc.contributor.authorUysal, Mucteba
dc.contributor.authorAygormez, Yurdakul
dc.contributor.authorAygun, Beyza Fahriye
dc.date.accessioned2026-06-27T14:55:30Z
dc.date.issued2024
dc.description.abstractEnvironmental and economic problems arising from cement production have made it necessary to find alternative binders. At this point, geopolymer mortars have come to the fore as an alternative construction material. In this study, 40% metakaolin + mineral additives (20% fly ash + 20% granulated blast furnace slag + 20% red mud) were used as binding material. NaOH (12M) and Na2SiO3 solutions were used. Recycling concrete aggregate and marble powder (MP) were used in equal proportions as aggregate. Different types of fibers (steel fiber (SF), polyamide fiber (PAF), and polypropylene fiber (PPF)) were used with different ratios (0.25, 0.50, 0.75, and 1%). In addition to mechanical properties (7, 28, and 56 days) such as compressive strength (CS), flexural strength (FS), and ultrasonic pulse velocity, high temperature, freezing-thawing, and sulfate resistances were performed. Results indicated that the series with 1% vol. SF had the highest unit weight and low water absorption, with the highest CS 38.5 MPa and FS 27.88% higher than the reference. However, considering the durability resistance, the best performance was observed in the series with 1% PPF by volume. The residual CS of this series after freezing-thawing was 32.95 MPa, the FS was 4.90 MPa, the CSs after Na2SO4 and Mg2SO4 were 38.32 MPa and 41.40 MPa, and FSs were 5.05 MPa and 4.41 MPa, respectively. Considering the abrasion resistance loss, the sequence of the series was as follows: 0.5% by volume PPF > 0.75% by volume PAF = 0.25% by volume SF.en
dc.description.sponsorshipThe experimental work was supported by the research fund of Balikesir University, the authors would like to express their sincere gratitude to the scientific research coordination unit for their financial support of the project (Project number: 2022/101). [2022/101]
dc.description.urihttps://doi.org/10.1007/s13369-023-08357-9
dc.identifier.doi10.1007/s13369-023-08357-9
dc.identifier.eissn2191-4281
dc.identifier.endpage5202
dc.identifier.issn2193-567X
dc.identifier.issue4
dc.identifier.startpage5179
dc.identifier.urihttps://hdl.handle.net/20.500.14981/66282
dc.identifier.volume49
dc.identifier.wos001093946200002
dc.language.isoeng
dc.publisherSPRINGER HEIDELBERG
dc.relation.ispartofARABIAN JOURNAL FOR SCIENCE AND ENGINEERING
dc.subjectAlkali-activated materials
dc.subjectMineral additives
dc.subjectPolypropylene fiber
dc.subjectPolyamide fiber
dc.subjectSteel fiber
dc.subjectSustainability
dc.subjectFLY-ASH
dc.subjectRED MUD
dc.subjectMECHANICAL-PROPERTIES
dc.subjectSULFATE RESISTANCE
dc.subjectBUILDING MATERIAL
dc.subjectFREEZE-THAW
dc.subjectSTRENGTH
dc.subjectCONCRETE
dc.subjectMETAKAOLIN
dc.subjectWORKABILITY
dc.subjectScience & Technology - Other Topics
dc.titleExploration of Fiber-Reinforced Geopolymer Mortars Containing Recycled Aggregates and Marble Powder
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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