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Ring-Shaped Lateral Bracing System for Steel Structures

机译:钢结构环形横向支撑系统

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Buckling of compression members has a great impact on the reduction of energy dissipation capacity and ductility of the structural system such as concentrically braced frame systems (CBFs). As well, direct connection of tensile and compression members to beams and designation of the link beam as a fuse, and the formation of plastic hinges in the link beam in eccentrically braced systems (EBFs) endanger the safety of this type structural systems. This paper introduces a new ring-shaped lateral bracing system so-called the Shami lateral bracing system (SLBs) which removes the common tensile and compressive members along with their connections to the structure. As a substitute, SLBs introduces a new element with proper ductility and energy dissipation capacity and could be an appropriate alternative to the existing systems. Because of the high degree of statically indeterminacy of the proposed system, the structural stiffness does not lead to a steep reduction after the formation of the first plastic hinge. The performance of this lateral system is evaluated by numerical modeling, and the results show that the structures resist against the lateral loads with acceptable seismic performance. It seems that this system in comparison with CBF and EBF systems may not be cost-effective for bending of the ring, welding, etc., but from the seismic performance points of view, it has good performance.
机译:压缩构件的屈曲对结构系统(如同心支撑框架系统(CBF)的能量耗散能力和延展性的降低具有很大的影响。同样,将拉伸和压缩构件的直接连接到束和指定作为熔丝的熔丝,并且在偏心支撑系统(EBFS)中的连杆梁中的塑料铰链的形成危及该类型结构系统的安全性。本文介绍了一种新的环形横向支撑系统所谓的Shami横向支撑系统(SLB),其除去共同的拉伸和压缩构件以及它们与结构的连接。作为替代品,SLB引入了具有适当延展性和能量耗散能力的新元素,并且可能是对现有系统的适当替代品。由于所提出的系统的高度静止程度,结构刚度不会导致第一塑料铰链形成后的陡峭降低。通过数值建模评估该横向系统的性能,结果表明,结构抵抗横向载荷,具有可接受的地震性能。似乎这个系统与CBF和EBF系统相比可能对环形,焊接等弯曲可能并不具有成本效益,但从地震性能的观点来看,它具有良好的性能。

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