纸质出版:2014
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[1]冉俣,邢国华,牛荻涛,刘伯权,吴涛.FRP(钢绞线)加筋混凝土梁正截面受弯承载力计算[J].防灾减灾工程学报,2014,34(01):85-90.
冉俣, 邢国华, 牛荻涛, et al. Calculation of Flexural Capacities of Concrete Beams Reinforced with FRP Bars(Steel Wires)[J]. 2014, 34(1): 85-90.
[1]冉俣,邢国华,牛荻涛,刘伯权,吴涛.FRP(钢绞线)加筋混凝土梁正截面受弯承载力计算[J].防灾减灾工程学报,2014,34(01):85-90. DOI: 10.13409/j.cnki.jdpme.2014.01.013.
冉俣, 邢国华, 牛荻涛, et al. Calculation of Flexural Capacities of Concrete Beams Reinforced with FRP Bars(Steel Wires)[J]. 2014, 34(1): 85-90. DOI: 10.13409/j.cnki.jdpme.2014.01.013.
纤维增强复合筋、不锈钢绞线等高强材料作为混凝土梁的受力筋可以充分发挥强度高、耐腐蚀性能好等优点
在土木工程中得到了广泛应用。为了分析此类高强材料加筋混凝土梁的受弯性能
在平截面假定基础上
对混凝土和受力纵筋分别采用混凝土Hongnestad模型和线弹性模型
通过平衡条件
推导了FRP(钢绞线)加筋混凝土梁受弯承载力的计算公式
并与国内外82根简支梁的试验结果进行了对比。研究结果表明:加筋混凝土梁抗弯强度试验值与理论值之比的平均值为1.07
标准差为0.14。建议公式可以较好地计算FRP(钢绞线)加筋混凝土梁的受弯承载力。实际工程构件抗弯截面设计时
建议安全配筋率取1.4倍平衡配筋率
设计截面弯矩取0.625倍理论受弯承载力
以使构件具有足够安全储备。
The use of high strength materials such as fiber reinforced polymer rebars
steel wires as reinforcement for concrete beams can give full play to superiority of high strength and resistance to corrosion etc.
and have been widely applied to civil engineering.In order to analyze flexural capacities of concrete beams reinforced with this kind of high strength material
this paper is based on the assumption that plane section before bending remains plane after bending
Hongnestad model and linear elastic model are separately used for concrete and longitudinal reinforcement
the flexural capacity formula of concrete beams reinforced with FRP bars(steel wires)is derived on a basis of the equilibrium condition and contrasted between the flexural capacity obtained from the theoretical analysis and that experimentally measured 82simply supported beams at home and abroad.It is shown that the average and standard deviation of the ratio between experimental and theoretical flexural capacities are 1.07and 0.14
respectively.The proposed formula can preferably calculate flexural capacity of concrete beams reinforced with FRP bars(steel wires).When the bend section of practical engineering member designed
to make member with sufficient safety reserves
this paper proposes to take 1.4times of the balanced reinforcement ratio for the security reinforcement ratio
0.625times of the theoretical flexural capacity for the design moment.
GFRP筋混凝土梁正截面受弯性能试验研究 [J]. 张志强,师晓权,李志业. 西南交通大学学报 . 2011(05)
FRP筋混凝土梁弯曲试验及设计方法探讨 [J]. 徐新生,纪涛,郑永峰. 建筑结构 . 2008(11)
FRP在工程结构中的应用与发展 [J]. 叶列平,冯鹏. 土木工程学报 . 2006(03)
受弯构件的变形性与新的性能指标的研究 [J]. 冯鹏,叶列平,黄羽立. 工程力学 . 2005(06)
纤维聚合物筋混凝土梁正截面性能的试验研究 [J]. 高丹盈,赵广田,B.Brahim. 工业建筑 . 2001(09)
GFRP/钢绞线复合筋混凝土梁力学性能及设计方法 [D]. 郝庆多. 哈尔滨工业大学 2009
Influence of fibers on flexural behavior and ductility of concrete beams reinforced with GFRP rebars [J] . Mohamed S. Issa,Ibrahim M. Metwally,Sherif M. Elzeiny. Engineering Structures . 2011 (5)
Experimental Investigation of Reinforced Concrete T-Beams Strengthened with Steel Wire Mesh Embedded in Polymer Mortar Overlay [J] . Guohua Xing,Tao Wu,Boquan Liu,Hua Huang,Songlin Gu. Advances in Structural Engineering . 2010 (1)
Flexural and shear capacities of concrete beams reinforced with GFRP bars [J] . A.F. Ashour. Construction and Building Materials . 2005 (10)
Flexural Performance of Concrete Beams Reinforced with FRP Grids [J] . Joseph Robert Yost,Charles H. Goodspeed,Edwin R. Schmeckpeper. Journal of Composites for Construction . 2001 (1)
Flexural behaviour of concrete beams reinforced with GFRP bars [J] . Saleh Hamed Alsayed. Cement and Concrete Composites . 1998 (1)
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