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An improved cable-cylinder bracing system with quarter-ring yielding devices for seismic retrofit of steel moment frames

机译:具有四分之一环生产装置的改进的电缆 - 缸支撑系统,用于钢时刻框架的地震改造装置

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摘要

This study proposes an innovative hybrid lateral load-resisting system, termed the ring-cable-cylinder bracing system, aimed at improving the energy dissipation capacity and ductility of the previously introduced cable-cylinder bracing (which offers relatively the same level of seismic energy dissipation and ductility as the original bare steel frame), and minimizing the damage to the beam-to-column connections via utilizing quarter-ring curved yielding devices. First, the proposed bracing system and its working mechanism are introduced. A mathematical procedure based on the theorem of the least work and the method of virtual work is then presented to derive highly-accurate, practical, and easy-to-use equations for calculating the thickness of the utilized quarter-ring yielding devices. The design requirements for these curved devices, based on the characteristics of the frame in which they are utilized, are also discussed exhaustively. In the next step, the presented formulae's accuracy and usability are comprehensively investigated by conducting a finite element parametric study. The results show that the proposed system can provide an extra source of energy dissipation and ductility. It was also observed that the new system leads to an increase in both initial stiffness and ultimate strength and limits the pinching phenomena in the hysteretic cycles.
机译:本研究提出了一种创新的混合抗横向荷载系统,称为环形索筒支撑系统,旨在提高先前引入的索筒支撑的耗能能力和延性(其提供的地震能量耗散和延性水平与原始裸钢框架相当),通过使用四分之一环弯曲屈服装置,最大限度地减少对梁柱连接的损坏。首先,介绍了所提出的支撑体系及其工作机理。然后,基于最小功定理和虚功法提出了一个数学程序,以推导出用于计算所用四分之一环屈服装置厚度的高精度、实用且易于使用的方程。根据使用这些弯曲装置的框架的特性,还详细讨论了这些弯曲装置的设计要求。下一步,通过进行有限元参数研究,全面研究了所提出公式的准确性和可用性。结果表明,所提出的系统可以提供额外的能量耗散和延性来源。还观察到,新系统导致初始刚度和极限强度增加,并限制了滞回循环中的挤压现象。

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