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Seismic toughness and failure mechanisms of reduced web-section beams: Phase 1 tests

机译:减小腹板截面梁的抗震韧性和破坏机理:第一阶段测试

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Avoiding fracture in the beam-column connections of steel moment frames is critical to their seismic performance. Both Reduced Web Section (RWS) and Reduced Beam Section (RBS) methods apply the capacity design principle to shift the location of yielding into the beam and away from the beam-column connection. In the RWS approach, large openings are introduced into the web of the beam, so that the arrangement and configuration of the openings determine the mode of inelastic mechanism that develops within the beam. In this paper, experimental and numerical results are discussed for five RWS specimens that were subjected to reversed cyclic displacements. Also, the concept and potential inelastic modes of RWS beams are introduced, and beam shear equations corresponding to the assumed plastic mechanisms are derived. Of the five specimens, one had only two openings close to the beam-column connections, while the others had multiple openings distributed over the beam span. Most of the specimens exhibited stable hysteretic behavior up to approximately 6% story drift. (C) 2017 Elsevier Ltd. All rights reserved.
机译:避免钢制弯矩框架的梁柱连接处的断裂对于其抗震性能至关重要。减小的腹板截面(RWS)和减小的梁截面(RBS)方法都应用了容量设计原理,将屈服的位置转移到梁中并远离梁-柱连接。在RWS方法中,将大的开口引入到梁的腹板中,以便开口的布置和配置确定在梁内发展的非弹性机制的模式。在本文中,讨论了五个RWS标本的实验和数值结果,这些标本经受了反向循环位移。此外,介绍了RWS梁的概念和潜在的非弹性模态,并推导了与假定塑性机制相对应的梁剪力方程。在五个标本中,一个仅在靠近梁柱连接处有两个开口,而另一个在整个梁跨上分布有多个开口。大多数样品表现出稳定的磁滞行为,直至大约6%的故事漂移。 (C)2017 Elsevier Ltd.保留所有权利。

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