Shear Deformation of Steel Fiber-Reinforced Prestressed Concrete Beams

被引:0
作者
Jin-Ha Hwang
Deuck Hang Lee
Hyunjin Ju
Kang Su Kim
Thomas H.-K. Kang
Zuanfeng Pan
机构
[1] University of Seoul,Department of Architectural Engineering
[2] University of Illinois at Urbana-Champaign,Department of Civil and Environmental Engineering
[3] Seoul National University,Department of Architecture & Architectural Engineering
[4] Tongji University,Department of Building Engineering
来源
International Journal of Concrete Structures and Materials | 2016年 / 10卷
关键词
SFRPSC; shear; prestressed concrete; steel fiber; shear deformation; shear strength;
D O I
暂无
中图分类号
学科分类号
摘要
Steel fiber-reinforced prestressed concrete (SFRPSC) members typically have high shear strength and deformation capability, compared to conventional prestressed concrete (PSC) members, due to the resistance provided by steel fibers at the crack surface after the onset of diagonal cracking. In this study, shear tests were conducted on the SFRPSC members with the test variables of concrete compressive strength, fiber volume fraction, and prestressing force level. Their localized behavior around the critical shear cracks was measured by a non-contact image-based displacement measurement system, and thus their shear deformation was thoroughly investigated. The tested SFRPSC members showed higher shear strengths as the concrete compressive strength or the level of prestress increased, and their stiffnesses did not change significantly, even after diagonal cracking due to the resistance of steel fibers. As the level of prestress increased, the shear deformation was contributed by the crack opening displacement more than the slip displacement. In addition, the local displacements around the shear crack progressed toward directions that differ from those expected by the principal strain angles that can be typically obtained from the average strains of the concrete element. Thus, this localized deformation characteristics around the shear cracks should be considered when measuring the local deformation of concrete elements near discrete cracks or when calculating the local stresses.
引用
收藏
页码:53 / 63
页数:10
相关论文
共 60 条
[1]  
Avendaño AR(2011)Efficient shear reinforcement design limits for prestressed concrete beams ACI Structural Journal 108 689-697
[2]  
Bayrak O(1972)Steel fibers as shear reinforcement in beams ACI Journal Proceedings 69 640-644
[3]  
Batson G(2014)Flexural and shear resistance of steel fiber-reinforced lightweight concrete beams Journal of Structural Engineering 140 04013103-244
[4]  
Jenkins E(2012)Generalization of shear truss model to the case of SFRC beams with stirrups Computers and Concrete 9 227-606
[5]  
Spatney R(2010)Shear behavior of steel fiber-reinforced concrete beams without stirrup reinforcement ACI Structural Journal 107 597-221
[6]  
Campione G(1999)Prestressed fiber reinforced concrete beams with reduced ratios of shear reinforcement Cement & Concrete Composites 21 213-846
[7]  
Colajanni P(2015)Shear performance assessment of steel fiber reinforced prestressed concrete members Computers and Concrete 16 825-115
[8]  
Recupero A(2006)Shear strength of hollow-core slabs PCI Journal 51 110-317
[9]  
Spinella N(2013)Principal component and multiple regression analysis for steel fiber reinforced concrete (SFRC) beams International Journal of Concrete Structures and Materials 7 303-96
[10]  
Dinh HH(2011)Revision on material strength of steel fiber-reinforced concrete International Journal of Concrete Structures and Materials 5 87-52