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Dual control connections in frames for earthquake resistance

机译:地震阻力框架中的双控制连接

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The behaviour optimization of structures under severe dynamic actions, such as earthquakes, is being increasingly aimed at the control of the stiffness and damping properties of structures. The present paper examines an alternative control mechanism for achieving dynamic structural adaptability. To achieve a larger degree of freedom in the members' control design, a novel dual connection of the primary members of the frame is proposed, which can initially "filtrate" the moment transmission at the joints. The connection consists of elastomeric material fixed at the primary joint areas and the lower column areas of three frames. The elastomeric shear connections are activated from the beginning of the horizontal excitations of the frame. Consequently, the stiffness of the primary system is no longer restricted to the geometric relations of the connected members. The elastic connection enables, primarily, a displacement increase of the structures and a slight increase of their energy dissipation performance. Based on three representative international strong earthquake motions of differing frequency contents, respective numerical nonlinear analyses of a SDOF system exemplify the earthquake performance of the controlled frames with elastic connections. In perspective, the stiffness control concept may enable further objectives in the design to be achieved for a stepwise adaptation by the primary system to the external acting forces through an increase of its damping properties.
机译:在严重动态动作(如地震)下结构的行为优化正在越来越多地旨在控制结构的刚度和阻尼性能。本文研究了实现动态结构适应性的替代控制机制。为了在构件的控制设计中实现更大程度的自由度,提出了框架主成员的新连接,其最初可以“滤除”在接头处的那一刻传递。该连接包括固定在初级接合区域和三帧的下柱区域固定的弹性材料。弹性体剪切连接从框架的水平激发的开始激活。因此,主系统的刚度不再限于连接构件的几何关系。弹性连接可以实现结构的位移增加和它们的能量耗散性能的略微增加。基于不同频率内容的三个代表国际强大地震动作,SDOF系统的各个数值非线性分析举例说明了具有弹性连接的受控框架的地震性能。在透视上,刚度控制概念可以通过初级系统通过增加其阻尼特性来实现在设计中实现的进一步目标,以便通过主要系统逐步地适应外部作用力。

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