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Effect of partial replacement of geopolymer binder materials on the fresh and mechanical properties: A review

期刊

CERAMICS INTERNATIONAL
卷 47, 期 11, 页码 14923-14943

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.ceramint.2021.02.127

关键词

Geopolymer; Fly ash; Metakaolin; Slag; Ordinary portland cement; Silica fume

资金

  1. College of Engineering Research Center at King Saud University in Riyadh, Saudi Arabia
  2. Deanship of Scientific Research at King Saud University in Riyadh, Saudi Arabia

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Geopolymer composites offer a sustainable alternative to conventional cement concrete in various applications, with their fresh and mechanical properties being adaptable through partial substitution of source materials. The critical role of different replacement materials in enhancing the potential applications of geopolymer composites is highlighted in the review, which also identifies research gaps for future investigation.
The growth of demand for concrete raises concerns about the consumption of natural resources and ordinary Portland cement. Geopolymer composites show promise as a sustainable alternative for conventional cement concrete. Considering the wide range of potential geopolymer composites applications (including suitability for transportation infrastructure, underwater applications, repair and rehabilitation of structures as well as recent developments in 3D printing), the desired fresh and mechanical properties of the geopolymer composite may vary between applications: for example, rapid setting can be a merit for certain applications and a demerit for others. Therefore, the desired fresh and mechanical properties (e.g., workability, setting time, compressive strength, etc.) can be controlled for a given geopolymer source material through its partial substitution by natural or by-product materials. Recognizing the critical role of various replacement materials in enhancing the potential applications of geopolymer composites, the present review was undertaken to quantify and understand the effect of partial replacement by fly ash, metakaolin, kaolin, red mud, slag, ordinary Portland cement, and silica fume on the setting time, workability, compressive strength and flexural strength of various source materials addressed in the literature. The review also provides insights into research gaps in the field to promote future research.

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