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首页> 外文期刊>Journal of Constructional Steel Research >Direct displacement-based seismic design of semi-rigid steel frames
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Direct displacement-based seismic design of semi-rigid steel frames

机译:基于直接位移的半刚性钢框架抗震设计

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Semi-rigid steel frames are often considered a cost-effective alternative to conventional fully rigid steel frames, because they use the economical partially restrained (PR) connections instead of the costly moment connections while performing satisfactorily under seismic loads. So far, semi-rigid steel frames have typically been designed using the traditional force-based method that is meant for the design of fully rigid steel frames. With this method, the sizing of various structural components is firstly carried out per code strength requirements and then revised iteratively to satisfy the stiffness requirements on both individual structural components and the overall frame. As a result, a designer often encounters considerable difficulty in achieving a structural solution that meets the target displacement and attains a desired yield mechanism. To address this issue, we propose a facile displacement-based method for the seismic design of semi-rigid steel frame structures by directly and explicitly relating the target displacement and deformation to the appropriate sizing of various structural components in terms of their strength, stiffness, and ductility. The new method is based on a simplified analytical semi-rigid frame model assuming that the structural plastic deformation is mainly concentrated within the PR connections while beams and columns largely remain elastic. A step-by-step procedure for implementing the new method is described and illustrated with example semi-rigid steel frame designs. The usefulness of the new method is demonstrated by comparing the target displacement and deformation values specified as a design objective with the actual values predicted by a nonlinear static pushover analysis. (C) 2016 Elsevier Ltd. All rights reserved.
机译:半刚性钢框架通常被认为是传统全刚性钢框架的一种经济有效的替代方案,因为它们在承受地震载荷的同时,使用经济的部分约束(PR)连接代替了昂贵的力矩连接,同时又能承受令人满意的性能。到目前为止,半刚性钢框架通常是使用传统的基于力的方法进行设计的,该方法用于设计全刚性钢框架。使用这种方法,首先根据规范强度要求对各种结构部件进行尺寸确定,然后进行迭代修改,以满足各个结构部件和整个框架的刚度要求。结果,设计人员在实现满足目标位移并获得所需屈服机理的结构解决方案时常常遇到相当大的困难。为了解决这个问题,我们提出了一种基于位移的基于方法的半刚性钢框架结构的抗震设计,该方法通过将目标位移和变形与强度,刚度,和延展性。新方法基于简化的分析半刚性框架模型,假定结构塑性变形主要集中在PR连接中,而梁和柱在很大程度上保持弹性。使用示例性半刚性钢框架设计来描述和说明实施新方法的分步过程。通过将指定为设计目标的目标位移和变形值与非线性静态推覆分析预测的实际值进行比较,证明了该新方法的实用性。 (C)2016 Elsevier Ltd.保留所有权利。

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