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首页> 外文期刊>Journal of structural engineering >Seismic Design and Performance of Steel Moment-Resisting Frames with Nonlinear Replaceable Links
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Seismic Design and Performance of Steel Moment-Resisting Frames with Nonlinear Replaceable Links

机译:带有非线性可更换连杆的钢制抗弯框架的抗震设计与性能

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Although moment resisting frames (MRFs) designed according to the latest seismic codes can provide life safety during a design level earthquake, they are expected to sustain significant damage at flexural yielding locations in the beams. The design of the beams for strength and drift control considerations are also interlinked, often resulting in overdesign of other elements, such as diaphragms and foundations. These drawbacks can be mitigated by introducing replaceable links at the locations of expected inelastic action. A five-story prototype MRF building with replaceable links in a high-seismic zone was designed. Four full-scale beam-to-column subassemblages representing the first floor exterior connections in the prototype building were experimentally evaluated. The results demonstrated that MRFs with replaceable flexural links can provide strength and ductility equivalent to existing MRFs while minimizing the effect of the added links on the elastic stiffness of the system. Finite-element models were then developed to capture the observed experimental responses, including local buckling, bolt slipping, and bolt bearing.
机译:尽管根据最新的地震规范设计的抗弯框架(MRF)可以在设计级地震中提供生命安全,但预计它们会在梁的弯曲屈服位置遭受重大破坏。出于强度和漂移控制考虑,梁的设计也相互关联,通常会导致其他元素(例如,隔膜和地基)的过度设计。这些缺点可以通过在预期的非弹性作用位置引入可替换的链接来减轻。设计了一个五层楼的原型MRF建筑物,该建筑物在高地震区内具有可更换的连接。通过实验评估了代表原型建筑一楼外部连接的四个完整的梁到柱子组合件。结果表明,具有可更换挠性链节的MRF可以提供与现有MRF相当的强度和延展性,同时最大程度地减少了添加的链节对系统弹性刚度的影响。然后开发有限元模型以捕获观察到的实验响应,包括局部屈曲,螺栓滑移和螺栓轴承。

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