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Fractional factorial design model for seismic performance of RC bridge piers retrofitted with steel-reinforced polymer composites

机译:RC桥墩抗震性能的分数局势设计模型用钢加固聚合物复合材料改造

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This study explores the effects of key design parameters on the performance of seismically deficient rectangular cross-section reinforced concrete (RC) bridge piers strengthened with steel-reinforced polymer (SRP) composites. Nonlinear response of bridge piers was modeled using fiber-based section discretization. Three-level fractional factorial design of experiments at 5% significance level was used to capture the effects of design parameters and their interactions, including concrete compressive strength, yield strength of steel bars, geometric ratio of longitudinal bars, internal transverse reinforcement spacing, pier aspect ratio, and number of retrofitting SRP layers. A parametric study was used to examine the main influence of and interactions between these factors on the seismic performance of SRP-strengthened piers at different damage limit states, including concrete core crushing, longitudinal reinforcement yielding and buckling, and ductility performance. Results show that the lateral load-carrying capacity and ductility performance of SRP-confined RC bridge piers were significantly influenced by the pier aspect ratio, materials properties, and amount of transverse and longitudinal reinforcement. Moreover, the resistance to buckling base shear, and overall ductility increased with increasing number of SRP layers.
机译:本研究探讨了关键设计参数对钢筋聚合物(SRP)复合材料加固的地震缺陷矩形截面钢筋混凝土(RC)桥墩性能的影响。使用基于光纤的截面的离散化模型建模桥接桥墩的非线性响应。三级分数阶乘设计的实验在5%的重要性水平中用于捕获设计参数的影响及其相互作用,包括混凝土抗压强度,钢筋的屈服强度,纵向杆的几何比例,内部横向加强间距,墩方面比率和改装SRP层的数量。参数研究用于检查这些因素对不同损伤极限状态的SRP加强墩抗震性能之间的主要影响,包括混凝土芯压碎,纵向增强产量和屈曲,延展性性能。结果表明,SRP限制RC桥接桥的横向承载能力和延展性性能受到墩宽高比,材料特性和横向和纵向加固量的显着影响。此外,随着SRP层数量的越来越多的SRP层,抗弯曲基础剪切和总延展性的抵抗力增加。

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