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Calculation of Flexural Capacity of Steel Reinforced Concrete Beams Strengthened with FRP

机译:FRP加固钢筋混凝土梁的抗弯承载力计算

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Based on earlier theoretical works on RC beams ,the mechanical properties of steel reinforced concrete beams strengthened with FRP(fiber reinforce polymer) are further investigated theoretically including theirs failure mechanism and loadability. According to the design method of reinforced concrete beam strengthened with FRP, steel reinforced concrete beam strengthened with FRP mainly can have three kinds of destruction patterns: the first case is the tensile steel yield, the tensile shaped steel yield, the FRP are put off, the compressive zone’s concrete has not crushed; the second case is the tensile steel yield, the tensile shaped steel yield, the FRP are put off; the compressive zone’s concrete has crushed; the last case is the tensile steel yield, the tensile shaped steel yield, the FRP are not put off, the compressive zone’s concrete has crushed. The second case is discussed in this paper.Based on the different position of middle axle and steel, steel concrete beams strengthened with FRP include: middle axle through the steel web, and not through the steel and just in steel compression flange . Aim at these three kind of situations, the stress are analysed. According to the stress patterns of steel reinforced concrete beams strengthened with FRP and different position between neutral axis and steel, the discriminant formula of the boundary destroys and the formula of cross-section flexural capacity calculation are put forward by using limit equilibrium theory.The formula is expressed clearly, simple and easy to use.The depth of compressive region is given in view of different failure types.
机译:在早期的RC梁理论研究的基础上,对FRP(纤维增强聚合物)加固的钢筋混凝土梁的力学性能进行了理论研究,包括其破坏机理和承载能力。按照FRP加固钢筋混凝土梁的设计方法,用FRP加固钢筋混凝土梁主要有三种破坏方式:第一种情况是拉伸钢筋,拉伸异型钢筋,FRP被推迟,压缩区的混凝土没有破碎;第二种情况是拉伸钢的屈服,拉伸型钢的屈服,FRP被推迟;压缩区的混凝土已碎裂;最后一种情况是抗拉钢筋屈服,抗拉异型钢屈服,FRP未被推迟,压缩区的混凝土被压碎。本文针对第二种情况进行了研究。根据中轴和钢的不同位置,用FRP加固的钢混凝土梁包括:中轴通过钢腹板,而不是通过钢而仅在钢制受压法兰中。针对这三种情况,对压力进行了分析。根据FRP加固的钢筋混凝土梁在中性轴与钢之间不同位置的应力模式,利用极限平衡理论提出了边界破坏的判别公式和截面抗弯承载力计算公式。压缩区域的深度是根据不同的故障类型给出的。

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