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Proposal of design rules for ductile X-CBFS in the framework of EUROCODE 8

机译:在EUROCODE 8框架内建议有关延性X-CBFS的设计规则

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Cross concentrically braced frames (X-CBFs) are commonly used as primary seismic resisting system, owing to their large lateral stiffness, simplicity of design, and relatively low constructional cost. Current EN 1998-1 provides design rules theoretically aiming at developing ductile global plastic mechanism, namely enforcing plastic deformations in the diagonal members, while the remaining structural members and connections should elastically behave. However, as widely demonstrated by many existing studies, the design and the corresponding seismic performance of EC8-compliant X-CBFs are generally affected by several criticisms, eg, difficulties in sizing of diagonal members, massive and non-economical structures, and poor seismic behavior. In light of these considerations, the research activity presented in this paper is addressed to revise the design rules and requirements given EN 1998-1 for X-CBFs to simplify the design process and to improve the ductility and the dissipative capacity of this structural system. Hence, design rules are proposed for the next version of EN 1998-1 and numerically validated by means of nonlinear dynamic analyses.
机译:十字同心支撑框架(X-CBF)由于其较大的侧向刚度,设计简单和相对较低的建造成本而通常用作主要的抗震系统。当前的EN 1998-1提供了理论上旨在发展延性整体塑性机制的设计规则,即在对角构件中强制塑性变形,而其余结构构件和连接应具有弹性。然而,正如许多现有研究所广泛证明的那样,符合EC8的X-CBF的设计和相应的抗震性能通常受到若干批评的影响,例如,对角线构件的尺寸设置困难,大型和非经济性结构以及抗震性能差行为。考虑到这些考虑因素,本文提出的研究活动旨在修改X-CBF的EN 1998-1给出的设计规则和要求,以简化设计过程并提高该结构系统的延展性和耗散能力。因此,为下一版EN 1998-1提出了设计规则,并通过非线性动力学分析对其进行了数值验证。

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