Abstract
AbstractThe mechanical properties of lightweight aggregate concrete developed with the use of bottom ash aggregate (LWAC-BA) as a partial or full replacement of lightweight aggregate differ from those of general lightweight concrete made using natural fine and/or coarse aggregates. The mechanical properties of LWAC-BA are difficult to predict using the existing equations proposed by codes or researchers. Therefore, in this study, empirical equations using nonlinear regression analysis are proposed to predict the mechanical properties of lightweight concrete mixed with bottom ash aggregate, based on the collected measured values from other studies (Yang "Development of replacement technology for ready mixed concrete with bottom ash aggregates", 2020; Kim et al. Appl Sci, 10: e8016, 2020; Constr Build Mater 273: e121998, 2021). The collected data include density, compressive strength, elastic modulus, modulus of rupture, splitting tensile strength, and stress–strain relation of LWAC-BA featuring varying amounts of bottom ash fine aggregate and/or coarse aggregate. The proposed empirical equations for each mechanical characteristic are developed considering the replacement volume of bottom ash fine/coarse aggregates. The mean values of the ratios of the measured to predicted values obtained using the proposed equation range from 1.00 to 1.05, with a standard deviation ranging from 0.002 to 0.013, indicating a reasonably positive agreement.
Funder
Korea South-East Power Co.
Korea Agency for Infrastructure Technology Advancement
Publisher
Springer Science and Business Media LLC
Subject
Ocean Engineering,Civil and Structural Engineering
Reference21 articles.
1. ACI Committee 318. (2019). Building Code Requirements for Structural Concrete (ACI 318–19). American Concrete Institute.
2. Ferraro, C. C., Power, J. P., Roessler, J., Paris, J., & Townsend, T. G. (2016). From trash to treasure-pilot project demonstrates the potential for using waste-to-energy bottom ash as partial aggregate replacement in concrete pavement. Concrete International, 38(11), 46–51.
3. fib. (2010) Fédération Internationale du Béton. (MC2010), The fib Model Code for Concrete Structures.
4. Kim, H. K. (2015). Properties of normal-strength mortar containing coarsely - crushed bottom ash considering standard particle size distribution of fine aggregate. Journal of the Korea Concrete Institute, 27(5), 531–539. (in Korean).
5. Kim, Y. H., Kim, H. Y., Yang, K. Y., & Ha, J. S. (2020). Evaluation of workability and mechanical properties of bottom ash aggregate concrete. Applied Sciences, 10(22), e8016.
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