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首页> 外文期刊>Journal of structural engineering >Seismic Performance of a Novel Single and Double Spring-Based Piston Bracing
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Seismic Performance of a Novel Single and Double Spring-Based Piston Bracing

机译:新型单弹簧和双弹簧活塞支撑的抗震性能

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摘要

Concentric braced frames (CBFs) are commonly used all over the world to resist seismic forces in buildings. Buckling, however, is a major concern for CBFs, in which they lose their strength and stiffness when subjected to load reversals during earthquakes. To tackle this problem, a novel easy-to-fabricate low-cost spring-based piston bracing (SBPB) system is developed with single and double friction spring configurations. In this system, a brace member is able to carry a large magnitude of tension and compression forces using a special spring in the piston cylinder. Stable and self-centering hysteresis behavior is achieved when the system is subjected to qualifying quasi-static loading. The strain rate effect is assessed and comparable results are achieved without any performance degradation. Numerical simulation shows excellent matching with the test results. Two 4-story braced steel buildings are designed utilizing buckling-restrained braces (BRBs) and SBPB, and their performances are compared in terms of interstory drift and residual drift. The proposed system experiences zero residual deformations but relatively larger drift values when compared with BRBs.
机译:同心支撑框架(CBF)在世界范围内普遍用于抵抗建筑物中的地震力。然而,屈曲是CBF的主要关注点,在地震期间,当它们承受载荷逆转时,它们会失去强度和刚度。为了解决这个问题,开发了一种新颖的易于制造的低成本基于弹簧的活塞支撑(SBPB)系统,该系统具有单摩擦和双摩擦弹簧配置。在该系统中,支撑构件能够利用活塞缸中的特殊弹簧来承受很大的拉力和压力。当系统受到合格的准静态载荷时,可实现稳定且自定心的磁滞行为。评估了应变率效应并获得了可比较的结果,而没有任何性能下降。数值模拟显示了与测试结果的极佳匹配。利用屈曲约束支撑(BRB)和SBPB设计了两座四层支撑钢结构建筑,并根据层间位移和残余位移比较了它们的性能。与BRB相比,该系统的残余变形为零,但漂移值相对较大。

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