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Mechanical Properties of High Strength Self Compacting Concrete Based on Rheological Mix Proportioning


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MEHTA, P. K. – MONTEIRO, P. J. M.: Concrete, Microstructure, Properties and Materials. 3rd edition, McGraw-Hill, New York. Search in Google Scholar

GOLASZEWSKI, J. - KLEMCZAK, B. – SMOLANA, A. – GOLASZEWSKA: Effect of Foaming Agent, Binder and Density on the Compressive Strength and Thermal Conductivity of Ultra-Light Foam Concrete. Buildings, Vol. 12, Iss. 8, 2022, pp. 1-20. Search in Google Scholar

OZAWA, K.: High performance concrete based on the durability design of concrete structures. The Second East Asia Pacific Conference on Structural Engineering & Construction, 1989. Search in Google Scholar

ULUBEYLI, G .C. - BILIR, T. - ARTIR, R.: Durability Properties of Concrete Produced by Marble Waste as Aggregate or Mineral Additives. Procedia Engineering, Vol. 161, 2016, pp. 543-548. Search in Google Scholar

QASRAWI, H.: The use of steel slag aggregate to enhance the mechanical properties of recycled aggregate concrete and retain the environment. Construction and Building Materials, Vol. 54, 2014, pp. 298-304. Search in Google Scholar

MOHANKUMAR, N. B.: High Quality Concrete Comprising of Several Mix of ACM’s. Civil and Environmental Engineering, Vol. 16, Iss. 1, 2020, pp. 138-147. Search in Google Scholar

OKAMURA, H.: Self-compacting high-performance concrete. Concrete International, Vol. 19, Iss. 7, 1997, pp. 50-54. Search in Google Scholar

ZEYAD, A. M. - ALMALKI, A.: Influence of mixing time and superplasticizer dosage on self-consolidating concrete properties. Journal of Mater. Res. Technol., Vol. 9, Iss. 3, 2020, pp. 6101-6115. Search in Google Scholar

DADSETAN, S. - BAI, J. Mechanical and microstructural properties of self-compacting concrete blended with metakaolin, ground granulated blast-furnace slag and fly ash. Constr. Build. Mater, Vol. 146, 2017, pp. 658-667. Search in Google Scholar

JALAL, M. Comparative study on effects of Class F fly ash, nano silica and silica fume on properties of high-performance self-compacting concrete. Constr. Build. Mater., Vol. 94, 2015, pp. 90-104. Search in Google Scholar

DHAHEER, M. S. - Al-RUBAYE, M. M. - ALYHYA, W. S. - KARIHALOO, B. L. - KULASEGARAM, S.: Proportioning of self-compacting concrete mixes based on target plastic viscosity and compressive strength: Part I-mix design procedure. J. Sustain. Cement-Bas. Mater., Vol. 5, Iss. 4, 2015, pp. 199-216. Search in Google Scholar

MUNDRA, S. - SINDHI, P. R. - CHANDWANI, V. - NAGAR, R. - AGARWAL, V.: Crushed rock sand-An economical and ecological alternative to natural sand to optimize concrete mix. Perspect. Sci., Vol. 8, 2016, pp. 345-347. Search in Google Scholar

CHEN, Y. Y. – TUAN, B. L. A. - HWANG, C. L.: Effect of paste amount on the properties of self-consolidating concrete containing fly ash and slag. Constr. Build. Mater., Vol. 47, 2013, pp. 340-346. Search in Google Scholar

ACI, ACI Committee report 237R-07, Self-consolidating concrete, 2007. Search in Google Scholar

FATHI, H. - Lameie, T.: Effect of aggregate type on heated self-compacting concrete. Comput. Concrete, Vol. 19, Iss. 5, 2017, pp. 33-39. Search in Google Scholar

LONG, W. J. - GU, Y. - LIAO, J. - XING, F.: Sustainable design and ecological evaluation of low binder self-compacting concrete. J. Clean. Prod., Vol. 167, 2017, pp. 317-325. Search in Google Scholar

EFNAC, S.: Guidelines for Self-Compacting Concrete. EFNARC, UK, 2002. Search in Google Scholar

ABENDEH, R. M. - Bani Baker, M.: Using steel slag aggregate to strengthen self-compacting concrete durability. Proceedings of the Institution of Civil Engineers - Structures and Buildings, 2021, pp. 1–15. Search in Google Scholar

GOLASZEWSKI, J. - CYGAN, G.: The effect of Temperature on the Rheological Properties of Self-Compacting Concrete. In Brittle Matrix Composites, Vol. 9, 2009, pp. 359–368. Search in Google Scholar

QASRAWI, H.: Towards Sustainable Self-Compacting Concrete: Effect of Recycled Slag Coarse Aggregate on the Fresh Properties of SCC. Advances in Civil Engineering, 2018, pp. 1–9. Search in Google Scholar

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Angielski