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Seismic Performance of Cellular-Solid Shear Walls

机译:多孔固体剪力墙的抗震性能

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Cellular solids with deterministic periodic topologies show great potential for applications as response modification elements within structural systems,due to their ultra-light and good thermal properties.Response modification elements can provide additional stiffness and strength,resulting in reduced inter-story drifts and accelerations.A light-weight cellular solid shear wall could work efficiently for vibration mitigation in large scale structural systems.Finite Element models are developed to predict the stiffness,strength,and energy dissipation effectiveness of shear wall panels with cellular solids.The cellular structure of the shear wall essentially eliminates the potential of out of plane buckling which is prevailing in solid steel-plate shear wall systems.In addition,macroscopically,the cellular structure is responsible for the observed pure shear behavior of the panel.A parametric study to quantify the mechanical properties of the cellular shear wall panels is conducted as a function of the thickness and length of the individual cell walls,and the orientation angle of the vertical cell walls.Finally,to evaluate the performance of a structure fitted with cellular shear wall system(CSWS),a model of a three-story structural frame is developed and analyzed under seismic excitation.
机译:具有确定性周期性拓扑的细胞固体具有超轻和良好的热性能,因此在结构系统中作为响应修改元素具有巨大的应用潜力。响应修改元素可以提供额外的刚度和强度,从而减少层间位移和加速度。轻质蜂窝状固体剪力墙可以有效地缓解大型结构系统中的振动。开发了有限元模型来预测含蜂窝固体的剪力墙面板的刚度,强度和能量消散效率。墙基本上消除了在固体钢板剪力墙系统中普遍存在的平面失稳的可能性。此外,宏观上,蜂窝结构是面板所观察到的纯剪切行为的原因。进行参数研究以量化机械性能蜂窝剪力墙板的最后,为评估装有蜂窝剪力墙系统(CSWS)的结构的性能,该模型是三层结构框架的模型在地震激励下进行开发和分析。

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