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Stiffness degradation model of thin and lightly reinforced concrete walls for housing

机译:房屋薄壁和轻混凝土墙的刚度退化模型

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The stiffness of structural walls is a key parameter for seismic design because the distribution of shear forces depends on the relative stiffness of each wall of the structural system. The study of stiffness degradation of low-rise reinforced concrete walls has been focused on the description of the deterioration of such structural property. This study aims at proposing a semi-empirical model for assessing the lateral stiffness degradation in terms of drift ratio of thin and lightly reinforced concrete walls for low-rise and low-cost housing subjected to seismic demands. The variables of the study are the height-to-length ratio of walls (0.5, 1 and 2), type of concrete (normal-weight, light-weight and self-compacting), steel ratio of web shear reinforcement (0.125% and 0.25%), and the type of web shear reinforcement (deformed bars and welded-wire meshes). The experimental program comprises 23 walls tested under quasi-static reversed-cyclic loading. Lateral stiffness computed using measured response of walls are compared with stiffness computed using recommendations prescribed by codes or reported in a literature review. The effect of geometrical and mechanical properties of walls on stiffness is also assessed in the paper. In addition, the study proposes limit values of stiffness degradation for different limit states and performance levels.
机译:结构壁的刚度是抗震设计的关键参数,因为剪切力的分布取决于结构系统各壁的相对刚度。低层钢筋混凝土墙刚度退化的研究集中在描述这种结构性能的退化。这项研究旨在提出一个半经验模型,以评估承受地震需求的低层和低成本房屋的薄壁和轻质混凝土墙的漂移比,从而评估侧向刚度的下降。研究的变量包括墙的高长比(0.5、1和2),混凝土类型(普通重量,轻质和自密实),腹板抗剪钢筋的钢比率(0.125%和0.25%),以及腹板抗剪钢筋的类型(变形钢筋和电焊网)。该实验程序包括23个在准静态反向循环载荷下测试的墙。将使用墙的测量响应计算出的侧向刚度与使用规范规定的建议或文献综述中报告的刚度进行比较。本文还评估了壁的几何和机械性能对刚度的影响。此外,研究提出了针对不同极限状态和性能水平的刚度退化极限值。

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