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首页> 外文期刊>Journal of structural engineering >Experimental Tests of Steel Frames with Different Beam-Column Connections under Falling Debris Impact
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Experimental Tests of Steel Frames with Different Beam-Column Connections under Falling Debris Impact

机译:落石冲击下不同梁柱连接的钢框架的试验研究

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Falling debris may initiate or promote the progressive collapse of a structure. To mitigate progressive collapse under falling debris impact, steel frames with five types of beam-column connections were tested. Both single and multiple impacts were applied to each specimen to obtain dynamic responses, load-resisting mechanisms, and impact resistance. The results showed that a typical impact process was divided into three stages. The falling debris impact was mainly resisted by the inertia effect in the initial stage and by deformation in subsequent stages. The majority of the external work applied to the system was absorbed by bending deformation, especially by the plastic rotation at midspan of the beam. All the specimens had the same global deformation shape under the midspan impact scenario. The evolution of catenary action in specimens with different beam-column connections was similar. Catenary action was shown to significantly improve the load-carrying capacity and energy absorption in specimens with high levels of rotational ductility. Greater load-carrying capacity did not offer greater impact resistance. Load-carrying capacity and ductility both played a significant role in the energy absorption capability of the specimens. (C) 2019 American Society of Civil Engineers.
机译:掉落的碎屑可能引发或促进结构的逐渐塌陷。为了减轻在落下的碎石撞击下的逐渐倒塌,对具有五种梁柱连接的钢框架进行了测试。将单个和多个冲击都应用于每个样本,以获得动力响应,抗载荷机制和抗冲击性。结果表明,典型的冲击过程分为三个阶段。掉落的碎屑冲击主要受到初始阶段的惯性效应和后续阶段的变形的抵抗。施加到系统的大部分外部功都通过弯曲变形吸收,特别是通过梁中跨处的塑性旋转吸收。在中跨冲击情况下,所有样本均具有相同的整体变形形状。在具有不同梁柱连接的标本中,悬链作用的演变是相似的。接触网作用被证明可以显着提高具有高水平旋转延展性的试样的承载能力和能量吸收。更大的承载能力并未提供更大的抗冲击性。承载能力和延展性在试样的能量吸收能力中都起着重要作用。 (C)2019美国土木工程师学会。

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