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Strength, stiffness and cyclic deformation capacity of RC frames converted into walls by infilling with RC

机译:通过填充钢筋混凝土转换为墙的钢筋混凝土框架的强度,刚度和循环变形能力

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摘要

In seismic retrofitting of concrete buildings, frame bays are converted into reinforced concrete (RC) walls by infilling the space between the frame members with RC of a thickness of not more than their width. The cyclic behavior of the resulting wall depends on the connection between the RC infill and the surrounding RC members. The paper uses the results from 56 cyclic tests on such composite walls to express their properties in terms of the geometry, the reinforcement and the connection. Properties addressed are: (a) the yield moment at the story base; (b) the secant-to-yield-point stiffness over the shear span of the wall in a story; (c) the deflection at flexural failure in cyclic loading; (d) the cyclic shear resistance, including a sliding shear failure mode. Separate models are given for squat walls failing in shear and for those where the top of the column shears-off. The proposals are modifications of models developed in the past for monolithic RC walls from several hundred cyclic tests; blind application of these latter models as though the walls were monolithic gives, in general, unsafe predictions. By contrast, the diagonal compression strut approach in ASCE41-06 is safe-sided, but gives unacceptably large prediction scatter.
机译:在混凝土建筑物的抗震改造中,通过用不大于其宽度的RC填充框架构件之间的空间,将框架托架转换为钢筋混凝土(RC)墙。所得墙的循环行为取决于RC填充物与周围RC构件之间的连接。本文使用了这种复合墙体上56次循环测试的结果来表达其在几何形状,钢筋和连接方面的特性。涉及的属性是:(a)故事情节的屈服时刻; (b)故事墙中的剪力跨度的割线至屈服点刚度; (c)循环载荷下弯曲破坏时的挠度; (d)循环剪切阻力,包括滑动剪切破坏模式。对于在剪力作用下的蹲墙和在柱顶剪力的墙给出了单独的模型。这些提议是对过去数百次循环测试中为整体式RC墙开发的模型的修改;一般而言,盲目应用这些后代模型(好像墙是整体的)并不安全。相比之下,ASCE41-06中的对角压缩撑杆方法是安全的,但给出了不可接受的大预测散布。

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