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Deflection and Crack-Width Prediction of Partially Boned CFRP Concrete Beams

机译:部分粘合CFRP混凝土梁的偏转和裂缝宽度预测

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Concrete beams reinforced with fiber reinforced polymer(FRP)bars exhibit large deflections and crack widths as compared to concrete beams reinforced with steel due to the low modulus of elasticity of FRP. Consequently, in many cases, serviceability requirements may govern the design of such members. This paper describes six partial bonded concrete beams prestressed with CFRP tendons are tested under monotonic loads. Deformation and crack width of this kind of beams with varying unbonded length are systematically investigated. The predictions of the 《Code for Design of Concrete Structures》(GB50010-2002)equations are compared with the experimental results obtained by testing six partial bonded concrete beams prestressed with CFRP tendons. Good agreement was shown between the theoretical and the experimental results.
机译:与纤维增强聚合物(FRP)棒加强的混凝土梁表现出大的偏转和裂缝宽度,与由于FRP的低弹性模量而加强的混凝土梁相比。因此,在许多情况下,可维护性要求可以控制这些成员的设计。本文介绍了六个与CFRP肌腱预应力预应力的六个部分粘合的混凝土梁在单调负载下测试。系统地研究了这种具有不同不合格长度的这种光束的变形和裂缝宽度。将“混凝土结构设计守则”(GB50010-2002)方程的预测与通过测试用CFRP筋预应力的六个部分粘合的混凝土梁获得的实验结果进行比较。在理论和实验结果之间显示了良好的一致性。

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