Nonlinear finite element analysis of steel moment-resisting frames with shear fuse under seismic loading

Q2 Engineering
Ahmed A. M. AL-Shaar, Ibrahim S. I. Harba, Abdulkhalik J. Abdulridha
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引用次数: 0

Abstract

This study investigates the impact of shear fuse link length and position on the seismic response of multi-story steel frames. Pushover evaluation and nonlinear time history analysis were applied to steel frames with varied link lengths (0.5 m, 0.75 m, 1 m) and locations (all beams, side beams, and middle beams) to predict earthquake effects. The numerical study assessed the seismic performance of 4, 8, and 12-story steel moment-resistant frames. In the investigation, 30 models will be tested using three earthquakes: Halabjah, EL-Centro, and Northridge. The data show that increasing shear fuse link length improves lateral displacements and drifts for all building heights (four, eight, and twelve stories), especially during high-intensity earthquakes. In contrast, the impact on base shear ability is exceedingly complex, most likely varying with building height and earthquake characteristics. In some circumstances, shorter links benefit low-rise frames, while longer links may favor taller frames. Shear fuse-links can significantly improve the seismic performance of steel frames by distributing energy and introducing protective structural elements. Shorter connections may be desirable for displacement management in low-story (4-story) constructions, whereas more extended linkages are likely required to maintain base shear capacity in taller (8-story) frames. Positioning linkages in all beams maximizes energy dissipation while achieving optimal displacement and drift. Pushover testing demonstrates the effectiveness of shear fuse linkages in increasing energy dissipation and safeguarding various structural parts.

Abstract Image

地震荷载下带剪力引信的钢矩形抗力框架的非线性有限元分析
本研究探讨了剪力引信连接长度和位置对多层钢框架地震响应的影响。对不同长度(0.5 米、0.75 米、1 米)和位置(所有梁、边梁和中梁)的钢框架进行了推移评估和非线性时间历史分析,以预测地震效应。数值研究评估了 4 层、8 层和 12 层钢制矩形抗震框架的抗震性能。在调查中,将利用三次地震对 30 个模型进行测试:Halabjah、EL-Centro 和 Northridge 地震。数据显示,对于所有高度的建筑(4 层、8 层和 12 层),增加剪力引信链接长度都能改善侧向位移和漂移,尤其是在高烈度地震中。与此相反,对基底抗剪能力的影响却极为复杂,很可能随建筑物高度和地震特征的不同而变化。在某些情况下,较短的连接件有利于低层框架,而较长的连接件可能有利于高层框架。剪力熔断连接件可以通过分散能量和引入保护性结构元素来显著改善钢框架的抗震性能。在低层(4 层)建筑中,较短的连接件可用于位移管理,而在高层(8 层)框架中,则可能需要更长的连接件来维持基础抗剪能力。在所有梁中设置连接件可最大限度地消散能量,同时实现最佳位移和漂移。推力试验证明了剪力引信连杆在增加能量消耗和保护各种结构部件方面的有效性。
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来源期刊
Asian Journal of Civil Engineering
Asian Journal of Civil Engineering Engineering-Civil and Structural Engineering
CiteScore
2.70
自引率
0.00%
发文量
121
期刊介绍: The Asian Journal of Civil Engineering (Building and Housing) welcomes articles and research contributions on topics such as:- Structural analysis and design - Earthquake and structural engineering - New building materials and concrete technology - Sustainable building and energy conservation - Housing and planning - Construction management - Optimal design of structuresPlease note that the journal will not accept papers in the area of hydraulic or geotechnical engineering, traffic/transportation or road making engineering, and on materials relevant to non-structural buildings, e.g. materials for road making and asphalt.  Although the journal will publish authoritative papers on theoretical and experimental research works and advanced applications, it may also feature, when appropriate:  a) tutorial survey type papers reviewing some fields of civil engineering; b) short communications and research notes; c) book reviews and conference announcements.
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