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Corner Strip-Batten Technique for FRP-Confinement of Square RC Columns under Eccentric Loading

机译:偏心荷载作用下方形RC柱FRP约束的角钢带条技术

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In the present study, a new method is introduced for confining square concrete columns in which fiber-reinforced polymer (FRP) strips are used at corners and FRP battens on column sides. In this method, FRP battens confining the section do not undergo any curvature but similar to what happens in flat coupons, they are stretched as completely flat strips. To compare the proposed method with the intermittent wrap technique, 25 square reinforced-concrete (RC) columns with cross-sections of 133 x 133 mm and heights of 500 mm were subjected to load eccentricities of 0, 30, 60, 90, and 120 mm. The test parameters included the technique employed for confining columns, flexural strengthening technique, and applied load eccentricity. The experimental results demonstrated that confining battens in the new method of corner strip-batten are uniformly stretched under the tension stresses of confinement; therefore, more-uniform distribution of confining pressure on section occurs and stress concentration at corners is eliminated. Thus, compared to both unconfined and intermittently-wrapped RC columns, square RC columns confined through the corner strip-batten technique exhibit improved performance in terms of enhanced load-carrying capacity and ductility under eccentric loading. Finally, axial loading-bending moment (P-M) interaction diagrams were drawn for the strengthened columns. Comparison of the experimental results with those obtained from the expressions suggested in different codes revealed that the estimates of the codes were conservative when compared to experimental measurements. (C) 2015 American Society of Civil Engineers.
机译:在本研究中,引入了一种新方法来约束方形混凝土柱,其中在角处使用纤维增强聚合物(FRP)条,在柱侧使用FRP板条。在这种方法中,限制截面的FRP板条不会发生任何弯曲,但类似于平坦试样块中的情况,它们被拉伸为完全平坦的条状。为了将所提出的方法与间歇式包裹技术进行比较,对25个方形截面的133 x 133 mm,高度为500 mm的钢筋混凝土(RC)柱进行了0、30、60、90和120的载荷偏心分析。毫米测试参数包括用于约束柱的技术,抗弯加固技术以及所施加的载荷偏心率。实验结果表明,新的角钢条板压型方法中的压型板在压型应力作用下均匀地拉伸。因此,限制压力在截面上的分布更加均匀,并且消除了拐角处的应力集中。因此,与无限制和间断包装的RC柱相比,通过角钢条形压条技术约束的方形RC柱在偏心荷载下的承载能力和延展性方面均表现出改进的性能。最后,绘制了加固柱的轴向弯矩(P-M)相互作用图。将实验结果与从不同代码中建议的表达式获得的结果进行比较,发现与实验测量结果相比,代码的估计是保守的。 (C)2015年美国土木工程师学会。

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