兰州理工大学学报 ›› 2024, Vol. 50 ›› Issue (6): 107-112.

• 建筑科学 • 上一篇    下一篇

核心砼缺陷位置对钢管混凝土承载力致损机制研究

董军*1, 葛世超1, 李国华1, 向学建2, 刘殿元2   

  1. 1.北京建筑大学 工程结构与新材料北京市高等学校工程研究中心, 北京 102616;
    2.中路高科交通检测检测认证有限公司, 北京 100082
  • 收稿日期:2021-08-27 出版日期:2024-12-28 发布日期:2025-01-13
  • 通讯作者: 董 军(1967-),男,山东济南人,教授.Email:jdongcg@bucea.edu.cn
  • 基金资助:
    北京市自然科学基金(8202012),长江学者和创新团队发展计划资助(IRT_17R06)

Study on damage mechanism of core concrete defect location on CFST bearing capacity

DONG Jun1, GE Shi-chao1, LI Guo-hua1, XIANGXue-jian2, LIU Dian-yuan2   

  1. 1. Beijing Higher Institution Engineering Research Center of Structural Engineering and New Materials, Beijing University of Civil Engineering and Architecture, Beijing 102616, China;
    2. China-Road Transportation Verification & Inspection Hi-Tech Co. Ltd., Beijing 100088, China
  • Received:2021-08-27 Online:2024-12-28 Published:2025-01-13

摘要: 依托在建的某钢管混凝土单索塔斜拉桥工程背景,针对核心混凝土缺陷位置的差异,可能造成对钢管混凝土构件承载力降低的致损问题,结合不同典型缺陷位置工况下钢管混凝土构件承载力试验,建立数值有限元模型.对不同缺陷工况下的钢管混凝土承载力受力规律予以分析和讨论,并与试验结果进行比对.结果表明:核心混凝土缺陷的存在势必将降低了构件的承载能力,同时相对于下部位置存在缺陷的构件,上部或中部位置存在缺陷的构件更易破坏;由于边缘位置混凝土存在缺陷时,将削弱结构的套箍作用,边缘位置存在缺陷的构件所造成的承载力损失大于中心位置存在缺陷的构件.

关键词: 钢管混凝土结构, 内部缺陷, 承载力, 致损规律, 有限元

Abstract: Relying on the engineering background of a concrete-filled steel tubular single-pylon cable-stayed bridge under construction, aiming at the loss problem that the bearing capacity of concrete-filled steel tubular members may be reduced due to the different defect positions of core concrete, a numerical finite element model is established and analyzed by combining the bearing capacity tests of concrete-filled steel tubular members under different typical defect positions in this paper. The stress law of concrete-filled steel tube bearing capacity under different defect conditions is analyzed and discussed, and compared with the test results. The results show that the existence of core concrete defects inevitably reduce the bearing capacity of members Compared with the members with defects in the lower part, the members with defects in the upper or middle part are more likely to be destroyed. Additionally, defects located at the edge of the core concrete lead to greater loss in load-bearing capacity compared to defects in the central region, due to a weakened confinement effect, which is caused by the hoop effect of the structure.

Key words: the CFST structure, internal defects, bearing capacity, damage mechanism, finite element analysis

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