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首页> 外文期刊>Journal of structural engineering >Reinforced-Concrete Shear Walls Retrofitted Using Weakening and Self-Centering: Numerical Modeling
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Reinforced-Concrete Shear Walls Retrofitted Using Weakening and Self-Centering: Numerical Modeling

机译:钢筋混凝土剪力墙采用弱化和自定心改装:数值造型

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This paper investigates a novel retrofit strategy for code-deficient reinforced-concrete (RC) shear walls that are vulnerable to undesirable failure modes. The strategy combines weakening by partially cutting the wall base and self-centering by adding post-tensioning. RC walls in need of retrofit were analyzed under lateral cyclic loading using three-dimensional (3D) finite element (FE) modeling. Analyses were validated using test data from the literature on conventional walls that failed in flexure/shear and pure shear. These analyses were used to study the retrofit strategy. A parametric study was conducted to determine the working details of the retrofit method. A method was proposed to select retrofit parameters preliminarily. Retrofitted and original walls were compared. The sequence in which wall components failed was documented to identify changes in failure modes. Results of the analyses showed that although retrofitting reduced energy dissipation capacity, flexural displacements increased due to retrofit of poorly designed RC walls suffering from partial or pure shear failure. Retrofit resulted in fewer cracks, less intense concrete crushing, and a delayed fracture of transverse reinforcement. (C) 2020 American Society of Civil Engineers.
机译:本文调查了缺乏不良抗剪力墙(RC)剪切墙的新型改造策略,易受不期望的失效模式。通过在张紧后,通过部分切割壁基和自定心来结合弱化。使用三维(3D)有限元(Fe)造型在横向循环载荷下进行需要改造的RC壁。使用来自弯曲/剪切和纯剪切的传统墙壁上的文献中的测试数据验证了分析。这些分析用于研究改造策略。进行参数研究以确定改造方法的工作细节。提出了一种方法以预先选择改装参数。比较改装和原始墙壁。记录了墙壁组件失败的序列以识别故障模式的变化。分析结果表明,虽然改造了减少的能量耗散能力,但由于患有部分或纯剪切失效的抗损失不良的RC壁改造,弯曲位移增加。改造导致较少的裂缝,较小的混凝土压碎和横向加强延迟骨折。 (c)2020年美国土木工程师协会。

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