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首页> 外文期刊>Arabian Journal for Science and Engineering >Reliability of Using 3-D Woven Polypropylene Fiber in Strengthening of a Large-Scale RC Structure Subjected to Seismic Loads
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Reliability of Using 3-D Woven Polypropylene Fiber in Strengthening of a Large-Scale RC Structure Subjected to Seismic Loads

机译:在地震荷载作用下使用3-D编织聚丙烯纤维加固大型RC结构的可靠性

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Strengthening of reinforced concrete (RC) structures with fiber-reinforced polymer (FRP) composites has become an attractive alternative for the construction industry in recent years. Unfortunately, the cost of carbon FRP or glass FRP in strengthening/repairing of RC structures is expensive. In this paper, reliability of a cheap polypropylene fiber in strengthening of RC columns and shear walls under seismic loads is investigated. For the sake of comparison, the responses of twin large-scale RC models subjected to various simulated earthquakes on a large shaking table are investigated. The columns and shear wall of the first story of one of the twin models are strengthened with 3-D woven polypropylene fiber-reinforced polymer (3-D PP-FRP). However, the other RC model is not strengthened. The results show that the PP-FRP enhances the performance of the strengthened model to sustain relatively high dynamic excitations due to significant increase in confinement, shear capacity and consequently lateral resistance of its supporting elements. This results in the postponing of structural failure. Also, even after two additional simulated earthquakes, the mode of failure of the columns is changed from the total collapse in un-strengthened model to structural damage at columns' end connections for the strengthened one. Thus, the used material is promising in strengthening or rehabilitation of RC structures, since it is very cheap and light relative to other composite materials.
机译:近年来,使用纤维增强聚合物(FRP)复合材料增强钢筋混凝土(RC)结构已成为建筑行业的一种有吸引力的选择。不幸的是,碳纤维增强塑料或玻璃纤维增​​强塑料在钢筋混凝土结构的加固/修复中的成本很高。本文研究了廉价聚丙烯纤维在地震作用下加固RC柱和剪力墙的可靠性。为了进行比较,研究了在大型振动台上经受各种模拟地震的孪生大型RC模型的响应。孪生模型之一的第一个故事的立柱和剪力墙用3-D编织聚丙烯纤维增强聚合物(3-D PP-FRP)加固。但是,其他RC模型没有得到加强。结果表明,PP-FRP增强了模型的性能,因为其限制,剪切能力以及其支撑元件的侧向阻力显着增加,从而可以维持较高的动态激励。这导致结构故障的推迟。同样,即使在两次额外的模拟地震之后,柱子的破坏模式也从未加强模型中的全部坍塌变为加强了的柱子末端连接处的结构破坏。因此,所使用的材料相对于其他复合材料而言非常便宜且轻便,因此有望用于加强或修复RC结构。

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