[1]
Benin, A.V., Semenov, A. S, Semenov, S.G. Fracture simulation of reinforced concrete structures with account of bond degradation and concrete cracking under steel corrosion (2012).
DOI: 10.1201/b13165-49
Google Scholar
[2]
Benin, A.V., Semenov, A.S., Semenov, S.G. Fracture analysis of reinforced concrete bridge structures with account of concrete cracking under steel corrosion (2010) Advanced Materials Research, 831, pp.364-369.
DOI: 10.4028/www.scientific.net/amr.831.364
Google Scholar
[3]
Wang, Y. Mechanics of fiber reinforced cementitious composites (1989) Mechanics of fiber reinforced cementitious composites, 306 p.
DOI: 10.1201/9781482267747-12
Google Scholar
[4]
Peled, A., Bentur, A. Fabric structure and its reinforcing efficiency in textile reinforced cement composites (2003) Composites, 34 (2), pp.107-118.
DOI: 10.1016/s1359-835x(03)00003-4
Google Scholar
[5]
Stolyarov, O., Gorshkov, A. Application of textile high-strength materials in constructions (2009) Magazine of Civil Engineering, 4 (6), pp.21-25.
Google Scholar
[6]
Mansur, M.A., Aziz, M.A. Study of bamboo-mesh reinforced cement Composites (1983) The International Journal of Cement Composites and Lightweight Concrete, 5 (3), pp.165-171.
DOI: 10.1016/0262-5075(83)90003-9
Google Scholar
[7]
Parton, G.M., Shendy-EI-Barbary, M.E. Polystyrene concrete sandwich beams: stiffness and ultimate load analysis (1982) International Journal of Cement Composites and Lightweight Concrete, 4 (4), pp.199-208.
DOI: 10.1016/0262-5075(82)90023-9
Google Scholar
[8]
Currie, B., Gardiner, T. Effect of low temperature on the flexural behaviour of Polypropylene Mesh Reinforced Fibre Cement Composite (1989) Cement and Concrete Composites, 11 (3), pp.149-152.
DOI: 10.1016/0262-5075(89)90086-9
Google Scholar
[9]
Mu, B., Meyer, C. Flexural Behavior of Fiber Mesh-reinforced Concrete with Glass Aggregate (2002) ACI Materials Journal, 99 (5), pp.425-434.
DOI: 10.14359/12320
Google Scholar
[10]
Wang, Y., Backer, S. An experimental study of synthetic fibre reinforced cementitious composites (1987) Journal of Materials Science, 22 (12), pp.4281-4291.
DOI: 10.1007/bf01132019
Google Scholar
[11]
Walton, P.L., Majumdar, A.J. Properties of cement composites reinforced with Kevlar fibres (1978) Journal of Materials Science, 13 (5), pp.1075-1083.
DOI: 10.1007/bf00544703
Google Scholar
[12]
Klyuyev, S.V., Guryanov Yu.V. External reinforcing of fiber concrete constructions by carbon fiber tapes (2013) Magazine of Civil Engineering, 1 (36), pp.21-26. (rus).
DOI: 10.5862/mce.36.3
Google Scholar
[13]
Gizdatullin, A.R., Khozin, V.G., Kuklin, A.N., Khusnutdinov, A.M. Osobennosti ispytaniy i kharakter razrusheniya polimerkompozitnoy armatury [Specifics of testing and fracture behavior of fibre-reinforced polymer bars] (2014).
DOI: 10.5862/mce.47.4
Google Scholar
[14]
Fahmy, M.F.M. Advanced fiber-reinforced polymer (FRP) composites to strengthen structures vulnerable to seismic damage (2013) Advanced Fibre-Reinforced Polymer (FRP) Composites for Structural Applications, pp.511-551.
DOI: 10.1533/9780857098641.4.511
Google Scholar
[15]
Wan, B. Using fiber-reinforced polymer (FRP) composites in bridge construction and monitoring their performance (2014) Advanced Composites in Bridge Construction and Repair, pp.3-29.
DOI: 10.1533/9780857097019.1.3
Google Scholar
[16]
Triantafillou, T.C., Papanicolaou, C. Innovative applications of textile-based composites in strengthening and seismic retrofitting as well as in the prefabrication of new structures (2013) Advanced Materials Research, 639-640, pp.26-41.
DOI: 10.4028/www.scientific.net/amr.639-640.26
Google Scholar