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Environment-Friendly, Self-Sensing Concrete Blended with Byproduct Wastes
Marat Konkanov1,2, Talal Salem2, Pengcheng Jiao3
1Technical Faculty, Saken Seifullin Kazakh AgroTechnical University, Nur-Sultan 010011, Kazakhstan.
This study introduces eco-friendly, self-sensing concrete using waste materials like coal fly ash, blast furnace slag, and red mud. The research details how these additions impact the concrete
Area of Science:
- Materials Science
- Civil Engineering
- Sustainable Construction
Background:
- Smart structures leverage advanced concrete for electrical resistance-enabled self-sensing capabilities.
- Developing environmentally friendly construction materials is crucial for sustainable development.
Purpose of the Study:
- To develop and characterize an eco-friendly, self-sensing concrete using industrial byproduct wastes.
- To investigate the influence of coal fly ash (FA), blast furnace slag (BOF), and red mud (RM) on concrete properties.
Main Methods:
- Concrete mixtures were cast with varying volume fractions of FA, BOF, and RM.
- Samples were cured for 3, 7, and 28 days.
- Mechanical (compressive strength) and electrical (electrical resistance) properties were experimentally evaluated.
Main Results:
- The addition of byproduct wastes significantly influenced the mechanical and electrical properties of the concrete.
- Parametric studies revealed specific effects of FA, BOF, and RM on compressive strength and electrical resistance.
- Optimal combinations for desired self-sensing and mechanical performance were identified.
Conclusions:
- Environment-friendly, self-sensing concrete can be successfully produced using industrial byproduct wastes.
- Byproduct wastes offer a viable route to enhance concrete's self-sensing capabilities while promoting sustainability.
- Further research can optimize waste incorporation for advanced smart structure applications.
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