INFORMAZIONI SU QUESTO ARTICOLO

Cita

TRAN, T. T. - PHAM, T. M. - HAO, H.: Experimental and analytical investigation on flexural behaviour of ambient cured geopolymer concrete beams reinforced with steel fibers. Eng Struct 2019, 200, 109707. Search in Google Scholar

KHAN, M. Z. N. - SHAIKH, F. U. A. - HAO, Y. - HAO, H.: Synthesis of high strength ambient cured geopolymer composite by using low calcium fly ash. Constr Build Mater 2016; 125:809–20. Search in Google Scholar

GARTNER, E.: Industrially interesting approaches to ‘‘low-CO2” cements. Cem. Concr. Res. 34 (9) (2004) 1489–1498. Search in Google Scholar

SARKER, P.K.: Bond strength of reinforcing steel embedded in fly ash-based geopolymer concrete. Mater Struct 2010;44(5):1021–30. Search in Google Scholar

BAKHAREV, T.: Resistance of geopolymer materials to acid attack. Cem Concr Res 2005;35(4):658–70. Search in Google Scholar

NATH, P. - SARKER, P. K.: Flexural strength and elastic modulus of ambient-cured blended low-calcium fly ash geopolymer concrete. Constr Build Mater 2017; 130:22–31. Search in Google Scholar

LASKAR, A. I. - BHATTACHARJEE, R.: Rheology of fly-ash-based geopolymer concrete, ACI Mater. J. 108 (5) (2011) 536–542. Search in Google Scholar

ROMAGNOLI, M. - LEONELLI, C. - Kamse, E. - GUALTIERI, M. L.: Rheology of geopolymer by DOE approach. Constr. Build. Mater. 36 (2012) 251–258. Search in Google Scholar

DIAZ-LOYA, E. I. - ALLOUCHE, E. N. – VAIDYA, S.: Mechanical properties of fly-ash-based geopolymer concrete, ACI Mater. J. 108 (3) (2011) 300–306. Search in Google Scholar

SONG, X. J. - MAROSSZEKY, M. - BRUNGS, M. - MUNN, R.: Durability of fly ash based geopolymer concrete against sulphuric acid attack, in: Proceedings of the international conference on durability of building materials and components. Lyon, France, 2005, pp. 369–375. Search in Google Scholar

ALBITAR, M. - MOHAMED ALI, M. S. - VISINTIN, P. – DRECHSLER, M.: Durability evaluation of geopolymer and conventional concretes, Constr. Build. Mater. 136 (2017) 374–385. Search in Google Scholar

KATHIRVEL, P. - KALIYAPERUMAL, S. R. M.: Influence of recycled concrete aggregates on the flexural properties of reinforced alkali activated slag concrete. Constr. Build. Mater. 102 (2016) 51–58. Search in Google Scholar

VISINTIN, P. - MOHAMED ALI, M. S. - ALBITAR, M. - LUCAS, W.: Shear behaviour of geopolymer concrete beams without stirrups. Construction and Building Materials. 148 (2017) 10–21. Search in Google Scholar

Kim, Hung Mo. - Khai, Hung Yeoh. – Iftekhair, Ibnul Bashar. - U, Johnson Alengaram. - Mohd, Zamin Jumaat.: “Shear behaviour and mechanical properties of steel fibre-reinforced cement-based and geopolymer oil palm shell lightweight aggregate concrete”, Construction and Building Materials. 148 (2017) 369–375. Search in Google Scholar

TIAN, S. Ng. - ALI, A. - FOSTER, J. S.: The behaviour of steel-fibre- reinforced geopolymer concrete beams in shear. Magazine of Concrete Research, 2013, 65(5), 308–318. Search in Google Scholar

TOPARK-NGARM, P. - CAO, T. - CHINDAPRASIRT, P. - SATA, V.: Strength and Behaviour of Small-Scale Reinforced High Calcium Fly Ash Geopolymer Concrete Beam with Short Shear Span. Engineering Material and Technologies, Vol. 718, pp 191-195. Search in Google Scholar

TRAN, T. T. - PHAM, T. M. - HAO, H.: Effect of hybrid fibers on shear behaviour of geopolymer concrete beams reinforced by basalt fiber reinforced polymer (BFRP) bars without stirrups. Composite Structures 243 (2020) 112236. Search in Google Scholar

ÇELİK1, A. I. - ÖZBAYRAK, A. - ŞENER, A. - ACAR, M C.: Numerical analysis of flexural and shear behaviors of geopolymer concrete beams. Journal of Sustainable Construction Materials and Technologies. Vol. 7, Issue. 2, pp. 70–80, June 2022. Search in Google Scholar

HASAN, M. A. - SHEEHAN, T. - ASHOUR, A. - ELKEZZA, O.: Flexural behaviour of geopolymer concrete T-Beams reinforced with GFRP bars. Structures, Vol. 94, 2023, pp. Search in Google Scholar

VENKATACHALAM, S. - VISHNUVARDHAN, K. - AMARAPATHI, G. D. - MAHESH, S. R. -DEEPASRI, M.: Experimental and finite element modelling of reinforced geopolymer concrete beam. Materials Today: 2021, Proceedings, 45, 6500–6506. Search in Google Scholar

PHAM, D. Q. - NGUYEN, T. N. - LE, S. T. - PHAM, T. T. - NGO, T. D.: The structural behaviours of steel reinforced geopolymer concrete beams: An exper-imental and numerical investigation. In Structures (2021, Vol. 33, pp. 567–580). Search in Google Scholar

STRAUSS, A. - BENKO, V. - TÄUBLING, B. - VALAŠÍK, A. - ČUHÁK, M.: “Reliability of slender columns [zuverlässigkeit schlanker betonstützen: bewertung des stabilitätsverhaltens], beton- und stahlbetonbau, Vol. 112, No. 7,2017, pp. 392-401. Search in Google Scholar

VALAŠÍK, A. - BENKO, V. - STRAUSS, A. - TÄUBLING, B.: “Reliability assessment of slender concrete columns at the stability failure. AIP Conference Proceedings, Vol. 1922, Art. No. 130010, 2018. Search in Google Scholar

WU, L. - CHUNG C. N. - MAJOR, Z. - LAURENT, A. - LUDOVIC, N.: “From sem images to elastic responses: a stochastic multiscale analysis of ud fiber reinforced composites. Composite structures, Vol. 189, 2018. Search in Google Scholar

KOZIELOVA, M. - MARCALIKOVA, Z. - MATECKOVA, P. - SUCHARDA, O.: “Numerical analysis of reinforced concrete slab with subsoil. Civil and Environmental Engineering, Vol.16, No.1, 2020, pp.107-118. Search in Google Scholar

SAS IP, 1999.: ANSYS theory reference release 5.6, ANSYS, INC. CANONSBURG, PENNSYLVANIA, USA. Search in Google Scholar

426 A-AC.: The Shear strength of reinforced concrete members. ACI J Proc 1973;70(7). Search in Google Scholar

DINH, H. H. - PARRA, M. G. J. - WIGHT, J. K.: Shear strength model for steel fiber reinforced concrete beams without stirrup reinforcement. J Struct Eng 2011;137(10):1039–51. Search in Google Scholar

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