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Behavior of FRP-reinforced steel plate shear walls with various reinforcement designs

机译:具有各种加固设计FRP加筋钢板剪力墙的行为

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摘要

The nonlinear behavior of single- and multi-story steel plate shear walls (SPSWs) strengthened with three different patterns of fiber reinforced polymer (FRP) laminates (including single-strip, multi-strip and fully FRP-strengthened models) is studied using the finite element analysis. In the research, the effects of orientation, width, thickness and type (glass or carbon) of FRP sheets as well as the system aspect ratio and height are investigated. Results show that, despite an increase in the system strength using FRP sheets, ductility of reinforced SPSWs is decreased due to the delay in the initiation of yielding in the infill wall, while their initial stiffness does not change significantly. The content/type/reinforcement pattern of FRPs does affect the nonlinear behavior characteristics and also the mode and pattern of failure. In the case of multi-strip and fully FRP-strengthened models, the use of FPR sheets almost along the direction of the infill wall tension fields can maximize the effectiveness of reinforcement. In the case of single-strip pattern, the effectiveness of reinforcement is decreased for larger aspect ratios. Moreover, a relatively simplified and approximate theoretical procedure for estimating the strength of SPSWs reinforced with different patterns of FRP laminates is presented and compared with the analytical results.
机译:使用三种不同图案的单层和多层钢板剪切墙(SPSW)的非线性行为用三种不同的纤维增强聚合物(FRP)层压板(包括单带,多条带和完全FRP加强的模型)进行研究有限元分析。在研究中,研究了FRP片材的取向,宽度,厚度和型(玻璃或碳)以及系统纵横比和高度的影响。结果表明,尽管使用FRP片材的系统强度增加,因此由于填充壁中的屈服延迟而导致增强SPSW的延展性降低,而其初始刚度不会显着变化。 FRP的内容/类型/增强图案确实影响非线性行为特征以及失败的模式和模式。在多条带和完全FRP加强的模型的情况下,几乎沿着填充墙张力田的方向使用FPR纸张可以最大化加固的有效性。在单条带图案的情况下,对于较大的纵横比,增强的有效性降低。此外,呈现了估计用不同模式增强的FRP层压板增强的SPSW强度的相对简化和近似的理论过程,并与分析结果进行了比较。

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