超高性能混凝土 T 型梁的延性设计:力学模型和设计建议

IF 3 3区 工程技术 Q2 CONSTRUCTION & BUILDING TECHNOLOGY Structural Concrete Pub Date : 2024-08-14 DOI:10.1002/suco.202400214
Mujahed Alsomiri, Zhao Liu, Tao Wang, Jie Meng
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引用次数: 0

摘要

超高性能混凝土(UHPC)因其卓越的机械性能而成为近期备受关注的焦点。在建筑行业的各种项目中,越来越多地采用了超高性能混凝土。然而,超高性能混凝土构件的结构延展性尚未完全确定,而且经常因裂缝局部化现象的出现而受到影响。本文展示了五根 T 型梁的抗弯试验结果,并介绍了一种用于预测 UHPC T 型梁抗弯能力和破坏模式的模型。该模型采用曲率延性指数作为评估和确保构件延性的测量方法。结果表明,UHPC T 型梁的抗弯行为可通过代表开裂、钢筋屈服、裂缝定位和定位后承载力的四个关键点来表征。本研究的实验数据证实了该模型的有效性,文献中收集的测试数据也对其进行了补充。然后,利用所提出的模型推导出以延性为导向的设计限制,包括最小和最大配筋率以及最小局部应变能力。最后,本文总结了设计建议,并对截面条件、配筋限制、局部应变限制、足够延性范围和可行延性设计范围进行了分类。
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Ductility‐oriented design of UHPC T‐beams: Mechanical model and design recommendations
Ultrahigh performance concrete (UHPC) has recently become a major focus garnering substantial attention due to its remarkable mechanical properties. UHPC has been increasingly employed across diverse projects in the construction industry. However, the structural ductility of UHPC members has yet to be fully established and is often compromised by the manifestation of the crack localization phenomenon. This paper presents the flexural test results of five T‐beams and introduces a model for predicting the flexural capacity and failure modes of UHPC T‐beams. The model employs the curvature ductility index as a measurement for evaluating and ensuring the member's ductility. The results show that the flexural behavior of UHPC T‐beams can be characterized by four key points representing cracking, reinforcement yielding, crack localization, and post‐localization capacity. The validity of the model is substantiated by experimental data from this study and complemented by test data collected from the literature. The proposed model is then employed to derive ductility‐oriented design limits, including minimum and maximum reinforcement ratios and minimum localization strain capacity. Finally, the paper summarizes the design recommendations and provides a classification of section conditions, reinforcement limits, localization strain limits, adequate ductility range, and the feasible ductile design range.
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来源期刊
Structural Concrete
Structural Concrete CONSTRUCTION & BUILDING TECHNOLOGY-ENGINEERING, CIVIL
CiteScore
5.60
自引率
15.60%
发文量
284
审稿时长
3 months
期刊介绍: Structural Concrete, the official journal of the fib, provides conceptual and procedural guidance in the field of concrete construction, and features peer-reviewed papers, keynote research and industry news covering all aspects of the design, construction, performance in service and demolition of concrete structures. Main topics: design, construction, performance in service, conservation (assessment, maintenance, strengthening) and demolition of concrete structures research about the behaviour of concrete structures development of design methods fib Model Code sustainability of concrete structures.
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