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The influence of Seismic input in the Oblique Direction on the Strong-Column Weak-Beam Mechanism for RC Frame

机译:地震进位对斜向对RC框架强柱弱梁机构的影响

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In current seismic design code of each country in the world, the mainstream of earthquake input for calculating the building is to use X and Y directions conveniently. The X and Y directions are the main axis of the building, and the strong-column weak-beam damage mechanism has been considered only followed to these main axis. However the building response in the oblique direction is higher than in the main axis, and the frequency in the oblique direction of the building is higher than the X or Y direction as well. Moreover the column usually connects with two beams in the orthogonal directions and the strength ratio of the column to beams in the oblique direction is less than in X or Y direction. Therefore it could be the major reason to cause the column-plastic-hinge damage mechanism during the earthquake. In this paper, it is discussed how the seismic input in the oblique direction influence on the strong-column weak-beam damage mechanism for RC frame through the perspectives of the dimensional mechanical analysis, cyclic loading experiment and the finite element analysis for the dimensional column-beam joint, and then proposed that considering the seismic input in the oblique direction is necessary in the future structural design in order to reach the actual strong-column weak-beam mechanism.
机译:在世界上每个国家的当前地震设计代码中,用于计算建筑物的地震输入的主流是使用X和Y方向方便。 x和y方向是建筑物的主轴,并且仅考虑了强柱弱梁损坏机制,仅考虑了这些主轴。然而,倾斜方向上的建筑物响应高于主轴,并且建筑物的倾斜方向上的频率也高于x或y方向。此外,该柱通常用正交方向上的两个光束连接,并且柱在倾斜方向上的柱的强度比小于x或y方向。因此,可能是导致地震期间柱塑料铰链损伤机制的主要原因。本文讨论了如何通过尺寸力学分析,循环加载实验和尺寸柱的有限元分析来讨论倾斜方向对RC帧的强柱弱束损伤机制的抗震弱梁损伤机制的影响。 - 在未来的结构设计中需要考虑倾斜方向上的地震输入,以达到实际的强柱弱梁机制,所以考虑倾斜方向上的地震输入。

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