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Determination of plastic hinge properties for static nonlinear analysis of FRP-strengthened circular columns in bridges

机译:桥梁中FRP加固圆柱静力非线性分析的塑性铰特性确定

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In the recent years, rehabilitation of structures, strengthening and increasing the ductility of them under seismic loads have become so vital that many studies has been carried out on the retrofit of steel and concrete members so far. Bridge piers are very important members concerning rehabilitation, in which the plastic hinging zone is very vulnerable. Pier is usually confined by special stirrups predicted in the design procedure; moreover, fiber-reinforced polymers (FRP) jackets are used after construction to confine the pier. FRP wrapping of the piers is one of the most effective ways of increasing moment and ductility capacity of them, which has a growing application due to its relative advantages. In many earthquake-resistant bridges, reinforced concrete columns have a major defect which could be retrofitted in different ways like using FRP. After rehabilitation, it is important to check the strengthening adequacy by dynamic nonlinear analysis and precise modeling of material properties. If the plastic hinge properties are simplified for the strengthened members, as the simplified properties which FEMA 356 proposes for non-strengthened members, static nonlinear analysis could be performed more easily. Current paper involves this matter and it is intended to determine the plastic hinge properties for static nonlinear analysis of the FRP-strengthened circular columns.
机译:近年来,结构的修复,在地震载荷下加强和增加其延展性已变得至关重要,以至于到目前为止,已经对钢和混凝土构件的改型进行了许多研究。桥墩是修复工作中非常重要的一环,其中塑料铰接区非常脆弱。墩通常受限于设计过程中预测的特殊箍筋;此外,在施工后使用纤维增强聚合物(FRP)护套来限制码头。 FRP包裹墩是增加墩的弯矩和延性的最有效方法之一,由于其相对优势,其应用越来越广泛。在许多抗震桥梁中,钢筋混凝土柱存在主要缺陷,可以使用FRP等不同方式进行改造。修复后,重要的是要通过动态非线性分析和材料特性的精确建模来检查强化是否足够。如果简化了加固构件的塑料铰链特性,如FEMA 356建议的非加固构件的简化特性,则可以更轻松地进行静态非线性分析。当前的论文涉及此问题,旨在确定用于FRP加固的圆柱的静态非线性分析的塑性铰属性。

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