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Theory of plastic mechanism control for seismic design of steel plate shear walls

机译:钢板剪力墙地震设计塑性机理控制理论

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The present study deals with the seismic design of steel plate shear walls (SPSWs) using the theory of plastic mechanism control (TPMC). The TPMC is based on the theory of kinematic rigid-plastic, which by applying the second-order effects, can prevent the development of undesirable generic mechanisms such as soft stories, and it can ensure that the structure reaches the global mechanism. The global mechanism is a mechanism in which the damage distribution is uniform, and therefore, the maximum energy dissipation in the structure can be fulfilled. The present study first presents the seismic design provisions of the SPSW and then the SPSW design algorithm using TPMC. For practical examples, three frames including three-, six-, and nine-story frames with SPSW were designed using the proposed algorithm. For validation of the design procedure, the designed frames were evaluated by means of non-linear static analysis, showing that the frames can reach the global mechanism and their excellent seismic performance.
机译:本研究涉及使用塑料机构控制(TPMC)理论的钢板剪力墙(SPSW)的地震设计。 TPMC基于运动刚性塑料理论,通过施加二阶效应,可以防止开发不期望的通用机制,如软故事,可以确保该结构达到全球机制。全局机制是一种机制,其中损坏分布是均匀的,因此,可以实现结构中的最大能量耗散。本研究首先介绍了SPSW的地震设计规定,然后使用TPMC进行SPSW设计算法。对于实际示例,使用所提出的算法设计了三个包括三个带有SPSW的三个帧,包括SPSW。为了验证设计过程,通过非线性静态分析评估设计的帧,表明框架可以达到全球机制及其优异的地震性能。

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