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Analysis of Slag-Containing Steamed Concrete's Composition Efficiency
Leonid Dvorkin1, Vadim Zhitkovsky1, Ruslan Makarenko1
1Institute of Civil Engineering and Architecture, National University of Water and Environmental Engineering, 33028 Rivne, Ukraine.
Thermal power plant slag can be used to create stronger concrete. This study optimizes concrete mix designs using slag for enhanced strength and proposes a new design method.
Area of Science:
- Materials Science
- Civil Engineering
- Waste Management
Background:
- Thermal power plant slag is a globally available industrial waste.
- Utilizing this slag in concrete offers a sustainable disposal solution.
- Understanding its impact on concrete properties is crucial for effective application.
Purpose of the Study:
- To analyze the effect of thermal power plant slag on concrete mixture properties.
- To evaluate the mechanical properties of concrete subjected to heat-moisture processing.
- To optimize concrete composition for maximum strength using slag.
Main Methods:
- Experimental-statistical modeling was employed to optimize concrete composition.
- Quantitative estimates were derived for factors influencing water demand and strength.
- The study analyzed the impact of slag content and water demand on concrete characteristics.
Main Results:
- The influence of thermal power plant slag on concrete's technological and mechanical properties was quantified.
- Optimal slag content in aggregate was determined for maximum strength at different curing times (4 hours and 28 days).
- An experimental-statistical model was developed to optimize slag-based concrete.
Conclusions:
- Thermal power plant slag can be effectively utilized in concrete production.
- Optimal slag content enhances concrete strength, particularly after heat-moisture processing.
- A novel method for designing slag-based concrete compositions is proposed, maximizing strength per cement unit.
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