Open Access

Reinforced Concrete Beams Without Shear Reinforcement Using Fiber Reinforced Concrete and Alkali-Activated Material


Cite

COLLEPARDI, M.: The New Concrete. Grafiche Tintoretto, 2010, p. 436. Search in Google Scholar

MATECKOVA, P. - BILEK, V. - SUCHARDA, O.: Comparative study of high-performance concrete characteristics and loading test of pretensioned experimental beams. Crystals, 11 (4), 2021 art. No. 427. Search in Google Scholar

VAVRUS, M. – KRALOVANEC, J.: Study of Application of Fiber Reinforced Concrete in Anchorage Zone. Buildings, Vol. 13, Iss. 2, 2023, art. No. 524, doi: 10.3390/buildings13020524. Open DOISearch in Google Scholar

SUCHARDA, O. - MARCALIKOVA, Z. - GANDEL, R.: Microstructure, Shrinkage, and Mechanical Properties of Concrete with Fibers and Experiments of Reinforced Concrete Beams without Shear Reinforcement. Materials, Vol. 15, 2022, 5707, https://doi.org/10.3390/ma15165707. Search in Google Scholar

Cement Carbon Dioxide Emissions Quietly Double in 20 Years, https://news.wttw.com/2022/06/22/cement-carbon-dioxide-emissionsquietly-double-20-years. Search in Google Scholar

HÁJEK, P.: Principles of sustainability in designing concrete structures according to MC2020. Proceedings of the Conference 28. Concrete Days, ČBS 2022 (in Czech). Search in Google Scholar

JUENGER, M. - WINNEFELD, F. - PROVIS, J. L. - IDEKER, J.: Advances in alternative cementitious binders. Cem. Concr. Res., Vol. 41, 2011, pp. 1232-1243. Search in Google Scholar

PALOMO, A. – GRUTZECK, M. W. – BLANCO, M. T.: Alkali-activated fly ashes: A cement for the future. Cement and Concrete Research, Vol. 29 (8), 1999, pp. 1323-1329. Search in Google Scholar

PROVIS, J. - VAN DEVENTER, J. S. J.: Eds. Alkali Acivated Materiále. State-of-Art-Report, Rilem TC 224-AAM, 2014. Search in Google Scholar

PROVIS, J.: Geopolymers and other alkali activated materials: Why, how, and what? Materials and Structures, Vol. 47 (1-2), 2014, pp. 11-25. Search in Google Scholar

GEMRICH, J. – VESELÝ, V.: Low carbon cements. Nízkouhlíkové cementy 2023, Sborník 18. konference Technologie a provádění 2023 (in Czech). Search in Google Scholar

PALOMO, A. - MONTEIRO, P. - MARTAUZ, P. - BILEK, V. - FERNANDEZ-JIMENEZ, A.: Hybrid binders: A journey from the past to a sustainable future (opus caementicium futurum). Cement and Concrete Research, Vol. 124, 2019, art. No. 105829, doi: 10.1016/j.cemconres.2019.105829. Open DOISearch in Google Scholar

COLLINS, F. - SANJAYAN, J. G.: Workability and mechanical properties of alkali activated slag concrete, Cem. Donce. Res. Vol. 29, 1999, pp. 455-458. Search in Google Scholar

AMRAN, M. - FEDIUK, R. - MURALI, G. - AVUDAIAPPAN, S. - OZBAKKALOGLU, T. - VATIN, N. - KARELINA, M. - KLYUEV, S. - GHOLAMPOUR, A.: Fly Ash-Based Eco-Efficient Concretes: A Comprehensive Review of the Short-Term Properties. Materials, Vol. 14, 2021, 4264. Search in Google Scholar

MOHAMMED, A. A. - AHMED, H. U. - MOSAVI, A.: Survey of Mechanical Properties of Geopolymer Concrete: A Comprehensive Review and Data Analysis. Materials, Vol. 14, 2021, 4690. Search in Google Scholar

BILEK, V. - SUCHARDA, O. - BUJDOS, D. Frost Resistance of Alkali-Activated Concrete - An Important Pillar of Their Sustainability. Sustainability, Vol. 13, 473. https://doi.org/10.3390/su13020473 Search in Google Scholar

ALROUSAN, R. Z. - ALNEMRAWI, B. R.: The influence of concrete compressive strength on the punching shear capacity of reinforced concrete flat slabs under different opening configurations and loading conditions. Structures, Vol. 44, 2022, pp. 101-119, doi: 10.1016/j.istruc.2022.07.091 Open DOISearch in Google Scholar

KANG, S. T. - LEE, Y. - PARK, Y. D. - KIM, J. K.: Tensile fracture properties of an Ultra High Performance Fiber Reinforced Concrete (UHPFRC) with steel fiber. Composite Structures, Vol. 92 (1), 2010, pp. 61-71, doi: 10.1016/j.compstruct.2009.06.012. Open DOISearch in Google Scholar

AZIZIAN, H. - LOTFOLLAHI-YAGHIN, M. A. – BEHRAVESH, A.: Punching Shear Strength of Voided Slabs on the Elastic Bases. Iranian Journal of Science and Technology - Transactions of Civil Engineering, Vol. 45 (4), 2021, pp. 2437 - 2449, doi: 10.1007/s40996-020-00546-y. Open DOISearch in Google Scholar

SUCHARDA, O. - KONECNY, P. - KUBOSEK, J. - PONIKIEWSKI, T. - DONE, P.: Finite Element Modelling and Identification of the Material Properties of Fibre Concrete. Procedia Engineering, Vol. 109, 2015. pp. 234-239. Search in Google Scholar

HAITHAM, H. SAEED: Effect of Soil Nonlinearity on Analysis of Raft Foundation. Civil and Environmental Engineering, Vol. 18, Iss.1, 2022, pp. 292-300, doi: https://doi.org/10.2478/cee-2022-0027. Search in Google Scholar

HEGGER, J. - SHERIF, G. A. - RICKER, M.: Experimental investigations on punching behavior of reinforced concrete footings. ACI Structural Journal, Vol. 103, 2006, pp. 604–613. Search in Google Scholar

HALVONIK, J. - MAJTANOVA, L.: Experimental Investigation of the Maximum Punching Resistance of Slab-Column Connections. Slovak Journal of Civil Engineering, Vol. 26, 2018, pp. 22-28, doi: 10.2478/sjce-2018-0017. Open DOISearch in Google Scholar

TOMASOVICOVA, D. - JENDZELOVSKY, N. - MARTON, P.: Damage analysis of the industrial floor in the storage hall. International Multidisciplinary Scientific GeoConference Surveying Geology and Mining Ecology Management, SGEM, Vol. 17, Iss. 12, 2017, pp. 191-198, doi: 10.5593/sgem2017/12/S02.025. Open DOISearch in Google Scholar

73 2030 Static load tests of building structures. 5/2019. Search in Google Scholar

ČSN EN 12390-1: Testing hardened concrete – Part 1: Shape, dimensions and other requirements for specimens and moduls. 11/2021. Search in Google Scholar

SUCHARDA, O. - BROZOVSKY, J. - MIKOLASEK, D.: Numerical modelling and bearing capacity of reinforced concrete beams. Key Engineering Materials, Vol. 577-578, 2014, pp. 281-284. Search in Google Scholar

eISSN:
2199-6512
Language:
English