Flexural Strengthening of Two-Way RC Slabs with Textile Reinforced Mortar: Experimental Study and Calculation Model

被引:0
作者
Zongcai Deng
Qian Xia
Minggao Gong
Junlin Xu
机构
[1] Beijing University of Technology,Key Laboratory of Urban Security and Disaster Engineering, Ministry of Education
[2] Jingyeda New Building Materials Co. Ltd.,undefined
来源
KSCE Journal of Civil Engineering | 2023年 / 27卷
关键词
Textile reinforced mortar; Two-way slab; Flexural capacity; The theory of plastic hinges; Fiber strength utilization rate; Shear capacity;
D O I
暂无
中图分类号
学科分类号
摘要
Textile reinforced mortar (TRM) strengthening can improve the anti-aging performance of reinforced concrete (RC) slabs, and significantly improve the rust problem of steel plates and bending performance of RC slabs. To study the effect of TRM on the flexural capacity of two-way RC slab, four sided simply supported bending tests were conducted on two TRM strengthened concrete slabs and an unstrengthened control slab. And the effects of different strengthening techniques on the flexural capacity and bending deformation capacity of the two-way RC slabs were investigated. It was concluded that the application of TRM to strengthen the two-way RC slabs can effectively improve its bending bearing capacity and bending deformation capacity. Compared with the unstrengthened control slab, the bending bearing capacity of the two strengthened slabs increased by 54.2% and 43.8%, respectively, and the energy absorption value increased by 75.5% and 49.1%, respectively. In addition, compared with control slab, the post-cracking stiffness of TRM reinforced slabs treated with and without interface agents increased by 145.2% and 83.4%, respectively. This indicated that using interface agents for interface treatment could improve the adhesion between the TRM and the original RC slab, thereby preventing the initiation and development of cracks between the new and old interfaces. The strength utilization rate of textile was proposed, and the relationship between strength utilization rate of textile and maximum or minimum distribution network rate was analyzed. Based on the plastic hinge theory a simple calculation formula for the bending bearing capacity of the two-way RC slab strengthened with TRM was proposed, which provided the reference for the application of TRM for strengthening projects.
引用
收藏
页码:5268 / 5280
页数:12
相关论文
共 68 条
[1]  
Al-Salloum YA(2011)Textile-reinforced mortar versus FRP as strengthening material for seismically deficient RC beam-column joints Journal of Composites for Construction 15 920-933
[2]  
Siddiqui NA(2014)FRCM strengthening of shear-critical RC beams Journal of Composites for Construction 18 04014012-3060
[3]  
Elsanadedy HM(2014)Flexural strengthening of RC beams with an externally bonded fabric-reinforced cementitious matrix Journal of Composites for Construction 18 3049-748
[4]  
Abadel AA(2007)Textile-reinforced mortar versus fiber-reinforced polymer confinement in reinforced concrete columns ACI Structural Journal 104 740-214
[5]  
Aqel MA(2017)Yield-line plasticity and tensile membrane action in lightly-reinforced rectangular concrete slabs Engineering Structures 138 195-2949
[6]  
Azam R(2012)Bond-slip relations for PBO-FRCM materials externally bonded to concrete Composite Part B: Engineering 43 2938-720
[7]  
Soudki K(2011)Flexural strengthening of RC beams with cement-based composites Journal of Composites for Construction 15 707-377
[8]  
Babaeidarabad S(2022)Experimental study on biaxial flexural behaviors of textile reinforced concrete slab with hybrid Fibers Journal of Beijing University of Technology 48 367-4768
[9]  
Loreto G(2022)Flexural properties of ultra-high performance concrete reinforced with steel wire mesh or fiber mesh Acta Materiae Compositae Sinica 39 4757-961
[10]  
Nanni A(2015)Inexpensive strengthening technique for partially loaded reinforced concrete beams: Experimental study Journal of Materials in Civil Engineering 27 04015002-226