Experimental study on the tensile strength degradation of curved alkali resistant glass and carbon textile as concrete reinforcement under complex loading

被引:3
作者
Ho, Hoai [1 ]
Nguyen, Huy Cuong [1 ]
Dinh, Huu Tai [1 ]
Ngo, Dang Quang [1 ]
Le, Dang Dung [1 ]
机构
[1] Univ Transport & Commun, Fac Construct Engn, Hanoi, Vietnam
关键词
Textile reinforced concrete; Tensile strength degradation; Curved textile reinforcement; Complex loading; BEHAVIOR;
D O I
10.1016/j.cscm.2023.e01947
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Nowadays, textile reinforced concrete (TRC) is one of the promising methods for strengthening existing reinforced concrete (RC) and masonry structures. When TRC works as an externally bonded reinforcement of RC beams or columns, the textile fiber bends around the corners of the members. At these locations, the tensile strength of the curved textile reinforcement reduces due to the action of complex loading. This paper presents an experimental study on the tensile strength degradation of curved alkali resistant (AR) glass and carbon textile reinforcement in TRC with different curved diameters subjecting to both tensile and compressive loading. The results showed that the maximum tensile force and the tensile strength of both textile materials reduced as the diameter of the semi-circle decreased from 120 to 60 mm. The addition of the compressive load also resulted in lower strength in textile reinforcement. Compared with compressive load, the curvature diameters had a greater influence on the tensile strength of both textile materials. The failure modes of all the experiment cases were the rupture of the textile reinforcement in the centre of the curved sections or at the transition region of the straight and curved sections. The degradation ratio between the tensile strength of curved AR glass textile and that of straight filament was higher than in the case of carbon textile. In the case of the same curved diameter specimens, the compressive load had a greater influence on the tensile strength of carbon textile than on AR glass.
引用
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页数:13
相关论文
共 24 条
  • [1] [Anonymous], 2007, 101511 DIN EN
  • [2] [Anonymous], P INT S FERR THIN RE
  • [3] Brameshuber W., 2006, State-of-the-art report of RILEM technical committee TC 201-TRC Textile reinforced concrete
  • [4] Brameshuber W., 2016, MATER STRUCT, V49
  • [5] Curbach M., 2011, TEXTILE BEWEHRUNGEN
  • [6] Curbach M., 2012, Sonderforschungsbereich 528-Textile Bewehrungen zur bautechnischen Verstarkung und Instandsetzung-Final report: Gekurzte Fassung
  • [7] D.I. f Bautechnik, 2014, ALLG BAUAUFS ZUL 31
  • [8] Ekenel M., 2018, ACI SPECIAL PUBLICAT, V324, P41
  • [9] Fallis G.J., 2009, CONCR INT, V31, P62
  • [10] The FRP and TRC strengthening of the masonry structures
    Granovsky, Arkady
    Simakov, Oleg
    Dzhamuev, Bulat
    [J]. XXII INTERNATIONAL SCIENTIFIC CONFERENCE: CONSTRUCTION THE FORMATION OF LIVING ENVIRONMENT (FORM-2019), 2019, 97