Steel-concrete-steel sandwich composite pylons for cable-stayed bridges: structural behaviour of cable anchorage

IF 4 2区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY
Chenggong Wang , Haoran Cheng , Junjie Li , Zhao Xu , Changze Xu , Zhansheng Lin , Guangqiao Zhang , Guotao Yang
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Abstract

The cable-stayed bridge pylon is an important load-bearing component in bridges, especially the anchorage zone, which requires both high stiffness and load-bearing capacity. The steel-concrete-steel (SCS) sandwich composite structures provide a new alternative structural form for bridge pylons with excellent strength, stiffness, and cost-effectiveness. Besides, the modular construction of SCS sandwich composite bridge pylons achieve higher construction efficiency than traditional concrete bridge pylons. A 1:2 scaled model test was designed according to the actual project to investigate the structural behaviour of SCS sandwich composite cable anchorage under cable loading. Firstly, the stress distributions and load-displacement curves of inner and outer steel plates, and concrete cracks in the pylon anchorage zone were analyzed. Further, a simplified frame model was adopted to analyze the stresses in the cable pylon anchorage, which demonstrated that the SCS sandwich composite structures can improve the structural performance of cable anchorage. In addition, based on the finite element model verified by experimental results, the effects of section steel ratio, load-bearing plate area, section reinforcement ratio, and concrete strength on the load-bearing capacity and stress distribution in the anchorage zone were investigated. The results show that within a certain range, increasing the reinforcement ratio and load-bearing plate area can significantly increase the load carrying capacity of the cable anchorage, while the effects of increasing the cross-section reinforcement ratio and concrete strength are insignificant. The results of this paper can provide guidance to engineers in the practical application of SCS sandwich composite pylons.
斜拉桥用钢-混凝土-钢夹层组合塔:缆索锚固结构性能
斜拉桥塔是桥梁尤其是锚固区重要的承重构件,对其刚度和承载能力都有很高的要求。钢-混凝土-钢(SCS)夹层组合结构为桥塔提供了一种新的结构形式,具有优异的强度、刚度和成本效益。此外,SCS夹层复合桥塔的模块化施工比传统的混凝土桥塔具有更高的施工效率。根据工程实际,设计了1:2比例模型试验,研究了SCS夹芯复合锚索在索荷载作用下的结构性能。首先对塔架锚固区内外钢板及混凝土裂缝的应力分布、荷载-位移曲线进行了分析。采用简化框架模型对索塔锚固进行应力分析,验证了SCS夹层复合结构可以改善索塔锚固的结构性能。此外,基于试验结果验证的有限元模型,研究了截面配筋率、承载板面积、截面配筋率和混凝土强度对锚固区承载能力和应力分布的影响。结果表明:在一定范围内,提高配筋率和承重板面积可以显著提高锚索的承载能力,而提高截面配筋率和混凝土强度的影响不显著。本文的研究结果可以为工程人员在实际应用中提供指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Constructional Steel Research
Journal of Constructional Steel Research 工程技术-工程:土木
CiteScore
7.90
自引率
19.50%
发文量
550
审稿时长
46 days
期刊介绍: The Journal of Constructional Steel Research provides an international forum for the presentation and discussion of the latest developments in structural steel research and their applications. It is aimed not only at researchers but also at those likely to be most affected by research results, i.e. designers and fabricators. Original papers of a high standard dealing with all aspects of steel research including theoretical and experimental research on elements, assemblages, connection and material properties are considered for publication.
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