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Seismic design of chevron braces cupled with MRF fail safe systems

机译:装有MRF的V型人字形支撑的抗震设计

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In this paper, the Theory of Plastic Mechanism Control (TPMC) is applied to the seismic design of dual systems composed by moment-resisting frames and Chevron braced frames. The application of TPMC is aimed at the design of dual systems able to guarantee, under seismic horizontal forces, the development of a collapse mechanism of global type. This design goal is of primary importance in seismic design of structures, because partial failure modes and soft-storey mechanisms have to be absolutely prevented due to the worsening of the energy dissipation capacity of structures and the resulting increase of the probability of failure during severe ground motions. With reference to the examined structural typology, diagonal and beam sections are assumed to be known quantities, because they are, respectively, designed to withstand the whole seismic actions and to withstand vertical loads and the net downward force resulting from the unbalanced axial forces acting in the diagonals. Conversely column sections are designed to assure the yielding of all the beam ends of moment-frames and the yielding and the buckling of tensile and compressed diagonals of the V-Braced part, respectively.
机译:本文将塑性机构控制理论(TPMC)应用于抗弯框架和人字形支撑框架组成的双系统抗震设计。 TPMC的应用旨在设计双重系统,该双重系统能够在地震水平力作用下保证整体式坍塌机制的发展。此设计目标在结构的抗震设计中至关重要,因为由于结构的能量消散能力变差以及在严重地面下破坏的可能性增加,必须绝对防止部分破坏模式和软层机制动作。根据所检查的结构类型,对角线和横梁截面假定为已知量,因为它们分别设计为承受整个地震作用,并承受竖向载荷和由作用于不平衡轴向力而产生的净向下力。对角线。相反,圆柱截面的设计是为了确保弯矩框架所有梁端的屈服,以及分别确保V型支撑零件的拉伸和压缩对角线的屈服和屈曲。

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