落板式双组合梁系统的抗弯性能及挠度预测

IF 1.4 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY
Sun-Hee Kim, Tae-Hoon Lee, Hyun-Joo Suh, Sung-Mo Choi
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引用次数: 0

摘要

双落板组合梁体系是针对大跨度高层建筑发展起来的一种结构体系。该系统的目的是通过减少受弯构件的深度来降低楼面高度,同时通过在跨度两端结合刚性下降板来最大限度地减少挠度。对于带有落板的双组合梁系统,考虑到受弯构件的不同截面,评估框架是否能够在反复的横向荷载下表现出足够的弯曲和变形性能是至关重要的,例如地震引起的荷载。抗弯强度试验结果表明,各试件具有良好的抗弯性能,构件间荷载传递平稳。用弹性荷载法预测挠度时,结果与试验结果吻合较好,证实了该方法预测负弯矩挠度的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Flexural Performance and Deflection Prediction of the Drop Panel-Type Double Composite Beam System

Flexural Performance and Deflection Prediction of the Drop Panel-Type Double Composite Beam System

Flexural Performance and Deflection Prediction of the Drop Panel-Type Double Composite Beam System

The double composite beam system with drop panels is a structural system developed for high-rise buildings with long spans. This system aims to reduce floor height by decreasing the depths of flexural members while minimizing deflection through the incorporation of stiff drop panels at both ends of the span. For a double composite beam system with drop panels, it is essential to assess whether the frame can exhibit adequate flexural and deformation performance under repeated lateral loads, such as those induced by earthquakes, given the varying cross-sections of the flexural members. Experimental results on flexural strength indicate that all specimens demonstrate sufficient flexural performance, with smooth load transfer between members. When predicting deflection using the elastic load method, the results showed good agreement with the experimental outcomes, confirming the method’s validity for predicting negative moment-induced deflection.

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来源期刊
International Journal of Steel Structures
International Journal of Steel Structures 工程技术-工程:土木
CiteScore
2.70
自引率
13.30%
发文量
122
审稿时长
12 months
期刊介绍: The International Journal of Steel Structures provides an international forum for a broad classification of technical papers in steel structural research and its applications. The journal aims to reach not only researchers, but also practicing engineers. Coverage encompasses such topics as stability, fatigue, non-linear behavior, dynamics, reliability, fire, design codes, computer-aided analysis and design, optimization, expert systems, connections, fabrications, maintenance, bridges, off-shore structures, jetties, stadiums, transmission towers, marine vessels, storage tanks, pressure vessels, aerospace, and pipelines and more.
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