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Article detail · 2023

Combined effect of using steel fibers and demolition waste aggregates on the performance of fly ash/slag based geopolymer concrete

YÖKSİS OpenAlex SJR Q2 JCR Q2 Citations 32 Top 10% Percentile 93.6% FWCI 3.63
Year
2023
Type
article

Data source split

  • YÖKSİS YÖKSİS article record
  • YÖKSİS venue EUROPEAN JOURNAL OF ENVIRONMENTAL AND CIVIL ENGINEERING
  • Catalog match (ISSN) European Journal of Environmental and Civil Engineering
  • OpenAlex OpenAlex enrichment (abstract, citations, topics)

Abstract

OpenAlex · English

Developing sustainable construction products has been showing a rising trend recently. Geopolymer composites are remarkable binding materials fabricated based on recycling and sustainability. In this paper, an experimental investigation was conducted to study some mechanical and durability characteristics of steel fiber-reinforced fly ash/slag-based geopolymer concrete (GPC) with different proportions of recycled coarse aggregate. Steel fiber-reinforced geopolymer concrete mixtures incorporating recycled coarse aggregates of up to 40% at the interval of 10% were prepared, and the mixtures without recycled coarse aggregate were used as reference samples. The steel fiber ratio of 0.3% and 0.6% were used and the combined effect of steel fiber and recycled coarse aggregate on the geopolymer composites’ behavior regarding strength properties, sulfate resistance, elevated temperature resistance, abrasion resistance, and freezing-thawing resistance was addressed. A significant improvement in strength properties was observed in steel fiber reinforced recycled aggregate geopolymer concrete with increasing fiber content; however, the strength properties of geopolymer concrete were decreased with the increase of recycled coarse aggregate amount. Also, the properties such as abrasion resistance, resistance to elevated temperature, sulfate resistance, and freeze-thaw resistance were improved with the addition of steel fiber. It indicates that the synergetic effect of steel fiber and recycled aggregate helps to produce ecologically sound geopolymer concrete with good engineering properties and durability characteristics that will bring sustainability to the concrete sector. Generally, the results show that the recycled coarse aggregate ratio of up to 30% and 0.6% of steel fiber can be considered an ideal combination to make geopolymer concrete with better overall properties.

Topics

Citations

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32 citations

OpenAlex cited_by_count (cache / database)

21 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).

  1. Sustainable one-part alkali activated slag/fly ash Geo-SIFCOM containing recycled sands: Mechanical, flexural, durability and microstructural properties 2023 Citations 44 · OpenAlex
  2. Sustainable one-part alkali activated slag/fly ash Geo-SIFCOM containing recycled sands: Mechanical, flexural, durability and microstructural properties 2023 Citations 44 · OpenAlex
  3. Sustainable one-part alkali activated slag/fly ash Geo-SIFCOM containing recycled sands: Mechanical, flexural, durability and microstructural properties 2023 Citations 44 · OpenAlex
  4. Shear and flexural performance of reinforced geopolymer concrete beams cured under ambient and oven conditions with environmentally friendly waste steel tire wire additives 2025 Citations 13 · OpenAlex
  5. Shear and flexural performance of reinforced geopolymer concrete beams cured under ambient and oven conditions with environmentally friendly waste steel tire wire additives 2025 Citations 12 · OpenAlex
  6. Shear and flexural performance of reinforced geopolymer concrete beams cured under ambient and oven conditions with environmentally friendly waste steel tire wire additives 2025 Citations 12 · OpenAlex
  7. Shear and flexural performance of reinforced geopolymer concrete beams cured under ambient and oven conditions with environmentally friendly waste steel tire wire additives 2025 Citations 12 · OpenAlex
  8. Revolutionary optimization: Synthetic fiber-reinforced geopolymer mortars with metazeolite and red mud for unmatched durability and sustainability 2025 Citations 8 · OpenAlex
  9. Revolutionary optimization: Synthetic fiber-reinforced geopolymer mortars with metazeolite and red mud for unmatched durability and sustainability 2025 Citations 8 · OpenAlex
  10. Mechanical, Durability, and Environmental Impact Properties of Natural and Recycled Fiber Geopolymer with Zero Waste Approach: Alternative to Traditional Building Materials 2025 Citations 6 · OpenAlex

Authors

  1. Asfaw Mekonnen Lakew
  2. ORHAN CANPOLAT YILDIZ TEKNİK ÜNİVERSİTESİ
  3. MUKHALLAD MOHAMMAD MAWLOD AL-MASHHADANI
  4. MÜCTEBA UYSAL
  5. ANIL NİŞ İSTANBUL GELİŞİM ÜNİVERSİTESİ
  6. YURDAKUL AYGÖRMEZ
  7. Mohammad Bayati