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首页> 外文期刊>Journal of structural engineering >Pushdown Tests on Masonry Infilled Frames for Assessment of Building Robustness
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Pushdown Tests on Masonry Infilled Frames for Assessment of Building Robustness

机译:砌体填充框架下推测试,用于评估建筑物的坚固性

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The research presented in this paper addresses the influence of nonstructural masonry infill on the resistance of multistory buildings to progressive collapse under sudden column loss scenarios. In particular, the structural response of infilled frames in peripheral bays is investigated within the scope of a design-oriented robustness assessment framework previously developed at Imperial College London. This allows due consideration of structural redundancy, ductility, strength, dynamic effects, and energy absorption capabilities in a unified manner. The realistic contribution of masonry panels toward collapse arrest is examined considering the results from full-scale laboratory tests performed on different two-bay frames with brick-masonry infill subjected to incremental pushdown deformation, capturing the dominant deformation mode found following removal of an edge column. In these physical tests, it is observed that the failure mechanisms and damage patterns displayed by the infill panels under pushdown deformation are similar to those activated by lateral pushover loading. Clear evidence of diagonal cracking and shear sliding, eventually culminating in crushing of the compressed corners, is noted. Different infill configurations are tested, including central openings and an initial gap between masonry and frame elements. Overall, a global stable response is observed even in the presence of severe damage in the masonry panels, delivering a monotonic supply of energy absorption with increasing downward displacement. The outcome from this experimental research provides mechanically sound and quantifiable evidence that nonstructural masonry infill panels in peripheral frames offer a reliable and efficient source of enhanced robustness under column loss events. Because of the widespread application of masonry infill panels, this is believed to be particularly relevant within the context of retrofitting operations for robustness enhancement of existing structures, as a result of the growing demand for upgraded resilience of urban infrastructure. Similarly, due account for masonry infill subject to proper quality control during the construction process is recommended for rational robustness design of new buildings. (C) 2017 American Society of Civil Engineers.
机译:本文提出的研究旨在解决非结构性砖石填充物对多层建筑在突然的柱丢失情况下抵抗渐进倒塌的抵抗力的影响。特别是,在先前在伦敦帝国学院开发的面向设计的稳健性评估框架的范围内,研究了外围机架中填充框架的结构响应。这允许以统一的方式适当考虑结构冗余,延展性,强度,动态效果和能量吸收能力。考虑到对砖砌体填充物进行不同的下推式变形的不同两托架框架进行的全面实验室测试的结果,检验了砖石面板对坍塌停止的实际贡献,捕获了移除边柱后发现的主要变形模式。在这些物理测试中,观察到填充面板在下推变形下显示的破坏机理和破坏模式与横向侧推荷载激活的类似。注意到明显的对角线裂缝和剪切滑动的证据,最终导致压角的压碎。测试了不同的填充物配置,包括中心开口以及砖石和框架元素之间的初始间隙。总体而言,即使在砌体面板中存在严重损坏的情况下,也可以观察到整体稳定的响应,随着向下位移的增加,单调提供能量吸收。这项实验研究的结果提供了机械上合理且可量化的证据,表明外围框架中的非结构砌体填充面板在柱丢失事件下提供了可靠而有效的增强鲁棒性。由于砌体填充板的广泛应用,由于对提高城市基础设施的弹性的需求不断增加,因此在改造操作中增强现有结构的坚固性尤为重要。同样,为合理合理地设计新建筑物,建议在施工过程中适当考虑到砌体填充物并进行适当的质量控制。 (C)2017年美国土木工程师学会。

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