Open Access

Strengthening of Reinforced Concrete Beams with Textile-Reinforced Concrete


Cite

DAN ALEXANDRU, L. - ALEXANDRU, C. - FERDINAND-ZSONGOR, G.: Textile-reinforced concrete structural elements. Műszaki Tudományos Közlemények, 8.1, 2019, pp.61-66, https://doi.org/10.33894/mtk-2018.08.07. Search in Google Scholar

LAYTH, A. - ZINAH, W. - OSAMAH, M. - MAZIN, M.: Bending Behavior of Fiberglass Textile-Reinforced Thin Geopolymer Mortar Panels. C Search in Google Scholar

Civil and Environmental Engineering, 18(1), 2022, pp.280-291, https://doi.org/10.2478/cee-2022-0026. Search in Google Scholar

MAHMOUD, A. - YASEEN, S. - SHAFEEQ, S.: Al-Nahrain Journal for Engineering Sciences, 20(3), 2017, pp.625-635, https://doi.org/10.22401/jnus.17.2.16. Search in Google Scholar

ABDUL GHANI, M. - ALI, A.: Al-Nahrain Journal for Engineering Sciences, 22(3), 2019, pp.227-232, http://doi.org/10.29194/NJES.22030227. Search in Google Scholar

BRUCKNER, A. - ORTLEPP, R. - CURBACH, M.: Textile reinforced concrete for strengthening in bending and shear. Materials and structures, 39(8), 2006, pp.741-748, https://doi.org/10.1617/s11527-005-9027-2. Search in Google Scholar

AMIR, S. - RAPHAEL, C. - EMMANUEL. F. - PATRICE, H.: Flexural strengthening of reinforced concrete beams with textile reinforced concrete (TRC). In Advances in FRP Composites in Civil Engineering, 2011, pp. 665-667, https://doi.org/10.1007/978-3-642-17487-2_146. Search in Google Scholar

TRIANTAFILLOU, T.: Innovative textile-based composites for strengthening and seismic retrofitting of concrete and masonry structures. In Advances in FRP Composites in Civil Engineering, 2011, pp. 3-12, https://doi.org/10.1007/978-3-642-17487-2_1. Search in Google Scholar

AL-SALLOUM, Y.A. - ELSANADEDY, H.M. - ALSAYED, S.H. - IQBAL, R.A.: Experimental and numerical study for the shear strengthening of reinforced concrete beams using textile-reinforced mortar. Journal of Composites for Construction, 16(1), 2012, pp.74-90, DOI: 10.1061/(ASCE)CC.1943-5614.0000239. Search in Google Scholar

ELSANADEDY, H.M. - ALMUSALLAM, T.H. - ALSAYED, S.H. - AL-SALLOUM, Y.A.: Flexural strengthening of RC beams using textile reinforced mortar–Experimental and numerical study. Composite Structures, 97, 2013, pp.40-55, http://dx.doi.org/10.1016/j.compstruct.2012.09.053. Search in Google Scholar

VERBRUGGEN, S. - TYSMANS, T. - WASTIELS, J.: TRC or CFRP strengthening for reinforced concrete beams: An experimental study of the cracking behavior. Engineering structures, 77, 2014, pp.49-56, https://doi.org/10.1016/j.engstruct.2014.07.040. Search in Google Scholar

ESCRIG, C. - GIL, L. - BERNAT-MASO, E. - PUIGVERT, F.: Experimental and analytical study of reinforced concrete beams shear strengthened with different types of textile-reinforced mortar. Construction and building materials, 83, 2015, pp.248-260, https://doi.org/10.1016/j.conbuildmat.2015.03.013. Search in Google Scholar

SHAH, V. - HARDIK, S. - KAIZAD E. - HARISHKUMAR S.: Enhancement of RC Beams by Textile Reinforced Concrete (TRC). IJSTE - International Journal of Science Technology & Engineering, 2017, p.524-528, DOI:10.13140/RG.2.2.13499.41762. Search in Google Scholar

JAYAKRISHNAN, P.B. - SHAJI, P.: A Study on the Strengthening of RC Beams Using Textile Reinforcement. International Research Journal of Engineering and Technology, 5(4), 2018, www.irjet.net. Search in Google Scholar

KOUTAS, L.N. - TETTA, Z. - BOURNAS, D.A. - TRIANTAFILLOU, T.C.: Strengthening of concrete structures with textile reinforced mortars: A state-of-the-art review. Journal of Composites for Construction, 23(1), 2019, p.03118001, DOI: 10.1061/(ASCE)CC.1943-5614.0000882. Search in Google Scholar

JIE ZHU, C. - FANG, S. P. L. Ng. - PUNDIENE, I. - CHEN, J.: Sec. Structural Materials, Volume 7, 2020, https://doi.org/10.1016/j.prostr.2022.12.097. Search in Google Scholar

KOUTAS, L.N. - PAPAKONSTANTINOU, C.G.: Flexural strengthening of RC beams with textile-reinforced mortar composites focusing on the influence of the mortar type. Engineering Structures, 246, 2021, p.113060, https://doi.org/10.1016/j.engstruct.2021.113060. Search in Google Scholar

GIESE, A. C. H. - GIESE, D. N. - DUTRA, V. F. P. - DA SILVA FILHO, L. C. P.: Flexural behavior of reinforced concrete beams strengthened with textile-reinforced mortar. Journal of Building Engineering, 33, 2021, 101873, https://doi.org/10.1016/j.jobe.2020.101873. Search in Google Scholar

PONNIAH, R. - CHIDAMBARAM, RS.: Advances in Structural Mechanics and Applications: Proceedings of ASMA-2021, Volume 2, 2022, (pp. 213-225), DOI:10.1007/978-3-031-05509-6_18. Search in Google Scholar

IRAQI Standard Specification No. 5/1984: Portland cement. Central Organization for Standardization and Control Quality. Search in Google Scholar

IRAQI Standard Specification No. 45/1984: Aggregate from Natural Sources for Concrete and Construction. Central Organization for Standardization and Control Quality. Search in Google Scholar

ASTM A615-2016. “Standard Specification for Deformed and Plain Carbon-Steel Bars for Concrete Reinforcement”, American Society for Testing and Material International. Search in Google Scholar

ASTM A496-2007. “Standard Specification for Steel Wire, Deformed, for Concrete Reinforcement”, American Society for Testing and Material International. Search in Google Scholar

ASTM C 496M- 2011.” Standard Test Method for Splitting Tensile Strength of Cylindrical Concrete Specimens”, American Society for Testing and Material International. Search in Google Scholar

BS EN 12390-3:2019: Testing hardened concrete - Compressive Strength of test specimens. British Standards Institution, 2019. Search in Google Scholar

ASTM C496/C496M-11.: Standard Test Method for Splitting Tensile Strength of Cylindrical Concrete Specimens. American Society of Testing and Materials, 2011. Search in Google Scholar

eISSN:
2199-6512
Language:
English