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Experimental study on direct displacement-based seismic design of RC columns

机译:基于直接位移的钢筋混凝土柱抗震设计试验研究

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For performance-based seismic engineering of buildings, the direct displacement-based seismic design method is different from the coefficient method used in FEMA-273 and the capacity spectrum method adopted in ATC-40. The method not only is a linear static procedure but also is applied to the design of new constructions. This paper concerns with experimental studies on the accuracy of the direct displacement-based design procedure. Experimental results of three reinforced concrete (RC) columns designed by the displacement procedure are presented and discussed through pseudo-dynamic tests and cyclic loading tests. From the tests, it is shown that the stiffness degrading factor of RC columns plays a key role. The direct displacement-based seismic design method can reliably capture the maximum displacement demand of the test RC columns if the stiffness degrading factor adopted in the displacement design method for RC material is adequate.
机译:对于基于性能的建筑物抗震工程,基于直接位移的抗震设计方法不同于FEMA-273中使用的系数方法和ATC-40中采用的容量谱方法。该方法不仅是线性静态过程,而且还应用于新结构的设计。本文涉及基于直接位移的设计过程的准确性的实验研究。通过拟动力试验和循环荷载试验,提出并讨论了通过位移程序设计的三根钢筋混凝土柱的试验结果。从测试中可以看出,RC柱的刚度降低因子起着关键作用。如果在钢筋混凝土材料的位移设计方法中采用的刚度降级因子足够,则基于直接位移的抗震设计方法可以可靠地捕获试验钢筋混凝土柱的最大位移需求。

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