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首页> 外文期刊>Journal of structural engineering >Special Detailing Techniques to Improve Structural Resistance against Progressive Collapse
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Special Detailing Techniques to Improve Structural Resistance against Progressive Collapse

机译:特殊细部加工技术,可提高结构抵抗渐进塌陷的能力

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摘要

Previous research work has found that catenary action can significantly increase structural resistance in addition to flexural capacity under column removal scenarios. However, whether reinforcements in beams can effectively function as ties to develop catenary action against progressive collapse is a big concern in current engineering practice because of the limited rotational capacity of RC beam-column connections. Therefore, four RC frame specimens were designed and tested to investigate their structural behavior under a column removal scenario. In addition to a specimen designed with conventional detailing in accordance with ACI 318-05, the other three specimens were designed with special detailing techniques at little or no additional cost, endeavoring to improve catenary action capacity at large deformations without reducing the structural resistance at small deformations. The special detailing included placing an additional reinforcement layer at the midheight of beam sections, partially debonding bottom reinforcing bars in the joint region, and setting partial hinges at one beam depth away from the adjacent joint interfaces. Furthermore, the nonlinear static responses obtained from the tests were used to evaluate the progressive collapse resistances of the four specimens with the consideration of dynamic effect. With systematic instrumentation, the effects of detailing techniques on structural behavior are demonstrated in this paper at different levels. In particular, the mechanism of each special detailing to affect beam-column connection rotations is illustrated and discussed in detail. Finally, suggestions on structural design against progressive collapse via catenary action are provided.
机译:先前的研究工作发现,在去除色谱柱的情况下,悬链线作用不仅可以显着提高结构抗力,而且还具有抗弯能力。但是,由于RC梁柱连接件的旋转能力有限,因此梁的钢筋能否有效地起到约束链条作用以抵抗渐进性倒塌的作用是当前工程实践中的一个重大问题。因此,设计并测试了四个RC框架标本,以研究它们在拆除色谱柱情况下的结构行为。除了根据ACI 318-05设计的具有常规细部设计的标本之外,其他三种标本也采用特殊的细部设计技术进行了设计,而几乎没有或无需额外的成本,从而努力提高大变形时的悬链作用能力,而又不降低小变形时的结构阻力变形。特别的细节包括在梁截面的中间高度处放置一个额外的增强层,在接合区域中部分地松开底部钢筋,以及在远离相邻接合界面一个梁深度处设置部分铰链。此外,从测试中获得的非线性静响应被用于评估四个标本在考虑动力效应的情况下的渐进抗压性。借助系统的仪器,在不同层次上证明了细节处理技术对结构行为的影响。特别地,详细说明并讨论了每个特殊细节影响梁柱连接旋转的机制。最后,提供了针对结构设计的建议,以防止由于悬链作用而逐渐倒塌。

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