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Behavior of Reinforced Concrete Elements under Cyclic Shear. I: Experiments

机译:循环剪切下钢筋混凝土构件的性能。 I:实验

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摘要

In order to design reinforced concrete (RC) structures in earthquake regions, it is necessary to understand the behavior of RC panel elements subjected to reversed cyclic loading. This paper reports the testing of 12 reinforced concrete panels subjected to reversed cyclic shear stresses. The tests were earned out to evaluate the effects of two main variables: (1) the orientation of steel bars, and (2) the percentage of steel reinforcement. The test results showed that both variables have strong effects on the shear stiffness, the shape of the hysteresis loop, the shear ductility, and the energy dissipation capacity of a panel. Thus it is possible to design shear-dominant structures that are strong, stiff, and yet ductile by controlling the orientation of the steel bars and the percentage of steel in a panel.
机译:为了设计地震区域的钢筋混凝土(RC)结构,有必要了解承受反向循环荷载的RC面板元件的性能。本文报告了12个钢筋混凝土面板承受反向循环剪切应力的测试。进行了测试以评估两个主要变量的影响:(1)钢筋的方向,以及(2)钢筋的百分比。测试结果表明,这两个变量都对面板的剪切刚度,磁滞回线的形状,剪切延展性和能量消散能力有很大影响。因此,可以通过控制钢筋的方向和面板中的钢百分比来设计坚固,刚硬且易延展的剪切主导结构。

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