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Seismic toughness and failure mechanisms of reduced web-section beams: Phase 2 tests

机译:减小腹板截面梁的抗震韧性和破坏机理:第二阶段测试

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This study investigates an innovative method of avoiding brittle fracture at the beam-column connection welds of steel moment frames in earthquakes. The reduced web section (RWS) approach introduces large openings into the web to shift the location of inelasticity away from the connections. The configuration of the openings governs the mode and capacity of inelastic mechanism in the beam. In this paper, experimental results are reported for five RWS specimens that were subjected to quasi-static cyclic loading. Four specimens were designed to develop Mode-A mechanisms; three had a single unique opening at midspan, and one had two openings near the beam-column connections. The other specimen was designed to develop a Mode-B mechanism without having web post buckling (observed in the Phase 1 specimens Shin et al., 2017), which had a wide opening and two brass plates clamped to the web. The application of web openings was successful in achieving the intended inelastic mechanisms; inelastic deformation was due to yielding, buckling, and/or fracture of the webs around the opening(s) and plastic hinging of the T-sections above and below the opening(s). The three specimens with a single opening at midspan exhibited the most stable load-drift responses; the specimens displayed a loss of strength during the 3 or 4% drift cycles (due to local buckling and/or fracture of the webs) and subsequent transition from "full" to "S-shaped" hysteretic loops, but they regained full strength by the end of testing at story drifts up to 7%. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项研究研究了一种在地震中避免钢制弯矩框架的梁柱连接焊缝出现脆性断裂的创新方法。减小的腹板截面(RWS)方法会在腹板上引入较大的开口,以将非弹性位置从连接处移开。开口的形状决定了梁中非弹性机制的模式和容量。在本文中,报告了五个承受准静态循环载荷的RWS标本的实验结果。设计了四个标本以开发A型机制。三个在中跨有一个唯一的开口,一个在梁柱连接处附近有两个开口。另一个标本被设计为开发一种B型机制,而没有网柱屈曲(在第一阶段的标本Shin等人,2017年观察到),该网孔宽且两个铜板被夹在网上。网孔的应用成功地实现了预期的无弹性机制。非弹性变形是由于开口周围的腹板的屈服,屈曲和/或断裂以及开口上方和下方的T型截面的塑性铰合引起的。在中跨有一个单一开口的三个标本表现出最稳定的载荷-漂移响应。样品在3%或4%的漂移周期(由于腹板局部屈曲和/或断裂)以及随后从“完全”到“ S形”磁滞回线的过渡过程中显示出强度损失,但通过故事测试结束时漂移达7%。 (C)2017 Elsevier Ltd.保留所有权利。

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