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Contribution of RC columns and masonry wall to the shear resistance of masonry infilled RC frames containing different in size window and door openings

机译:RC柱和砌体墙对装有不同尺寸门窗尺寸的砖石填充RC框架的抗剪强度的贡献

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In design, the contribution of the masonry infill wall to the shear resistance of the infilled frame structural system is often neglected. However, past research shows that ignoring this element can lead to inaccurate predictions of the system’s behaviour. This paper investigates the influence of the opening type, size and position on the shear resistance and deformation capacity of individual components (infill and frame) in masonry infilled reinforced concrete (RC) frame structures. A computational model based on the non-linear finite element (FE) method of analysis has been developed. The computational model has been validated against a series of experimental tests carried out in the laboratory. An extensive parametric study was carried out and the influence of differences in size and location of window and door openings on the shear resistance of infilled frame was investigated. As a measure of the influence of the infill component, a shear resistance ratio for the frame was introduced. The normalized shear resistance capacity ratio represented the ratio of the shear force taken by the frame component (infilled frame case) divided by the shear force induced by the RC bare frame at observed drift ratios (damage grades). From the results analysis, it was found that the type of opening influences the design characteristics of the infilled RC frame. In particular, the shear resistance at columns of the infilled RC frame with a window opening is lower than the shear resistance of the columns of the RC frame. In contrast, the shear resistance at the columns of the infilled RC frame with a door opening is higher than the shear resistance of the columns of the RC frame, and in this case the contribution of the shear capacity of the frame is underestimated.
机译:在设计中,砌体填充墙对填充框架结构体系的抗剪强度的贡献通常被忽略。但是,过去的研究表明,忽略此元素可能导致对系统行为的错误预测。本文研究了开孔类型,大小和位置对砖混填充钢筋混凝土(RC)框架结构中各个构件(填充和框架)的抗剪强度和变形能力的影响。建立了基于非线性有限元分析方法的计算模型。该计算模型已针对实验室中进行的一系列实验测试进行了验证。进行了广泛的参数研究,研究了门窗尺寸和位置差异对填充框架抗剪强度的影响。作为填充成分的影响的量度,引入了框架的抗剪强度比。归一化的抗剪承载力比率表示框架构件(填充框架情况)所承受的剪切力除以RC裸框架在观察到的漂移率(损坏等级)下所产生的剪切力的比率。从结果分析中发现,开口的类型会影响填充式RC框架的设计特性。特别地,具有窗口开口的填充RC框架的柱的抗剪强度低于RC框架的柱的抗剪性。相反,具有门开口的填充式RC框架的柱的抗剪强度高于RC框架的柱的抗剪强度,在这种情况下,框架的抗剪承载力的贡献被低估了。

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