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Seismic Strengthening of Bond-Critical Regions in Rectangular Reinforced Concrete Columns Using Fiber-Reinforced Polymer Wraps

机译:用纤维增强聚合物包裹层对矩形钢筋混凝土柱中的粘结关键区域进行抗震加固

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摘要

The use of external fiber-reinforced polymer (FRP) wraps for bond strengthening of spliced reinforcement in rectangular reinforced concrete (RC) columns and the consequent effect on the seismic response of the columns are experimentally investigated. Full-scale-unconfined and FRP-confined column specimens with lap-spliced reinforcement at the base were tested. Also, companion columns with continuous reinforcement and with internal steel confinement to satisfy the ACI building code requirements for regions of high seismic hazard (earthquake-resistant columns) were tested for comparison. It was found that confining the spliced zone with FRP wraps increased the bond strength of the spliced bars, reduced the bond deterioration and pinching under cyclic loading, and increased the lateral load resistance and ductility of the columns. The corresponding improvements approached those of the earthquake-resistant columns. The lateral strain developed in the FRP increased with decreasing ratio of concrete cover to splice diameter and with increasing area of FRP wraps. The predictions of bond strength of spliced bars in FRP-confined concrete using available design expressions were in good agreement with the test data.
机译:使用外部纤维增强聚合物(FRP)包裹材料对矩形钢筋混凝土(RC)柱中的拼接钢筋进行粘结加固,并通过实验研究了其对柱的地震响应的影响。测试了在底部具有搭接钢筋的全尺寸无侧限和FRP侧限的柱标本。此外,还对具有连续钢筋和内部钢限制的满足高地震危险区域的ACI建筑规范要求的配套柱(抗震柱)进行了比较测试。结果发现,用FRP包裹材料包裹拼接区域可以提高拼接钢筋的粘结强度,减少粘结强度和循环荷载作用下的夹挤,并提高了抗侧向荷载能力和柱的延性。相应的改进接近了抗震柱的改进。 FRP中产生的侧向应变随着混凝土覆盖层与接头直径之比的减小以及FRP包裹层面积的增加而增加。使用可用的设计表达式对FRP约束混凝土中的拼接钢筋的粘结强度进行的预测与测试数据非常吻合。

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