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四肢格构式钢管混凝土压弯构件承载力计算

刘敏 马瑞 袁志强

建筑钢结构进展2026,Vol.28Issue(6):110-117,130,9.
建筑钢结构进展2026,Vol.28Issue(6):110-117,130,9.DOI:10.13969/j.jzgjgjz.20241125001

四肢格构式钢管混凝土压弯构件承载力计算

Bearing Capacity Calculation of Four-Legged CFST Latticed Members under Combined Compression and Bending

刘敏 1马瑞 1袁志强1

作者信息

  • 1. 辽宁工程技术大学 土木工程学院,辽宁 阜新 123000
  • 折叠

摘要

Abstract

To derive the axial force-bending moment(N-M)correlation equations for the four-legged concrete-filled steel tubular(CFST)latticed members under combined compression and bending,this paper utilized the established finite element models to explore the stress states of four-legged CFST latticed standard members with various eccentricity ratios.The effects of main parameters on the N-M strength and stability relationship curves were analyzed,leading to the proposal of the mathematical models for these curves.The results indicate that there is a balanced point on the N-M interaction curves,which divides the curves into two parts:one controlled by the compressive yielding of chords in compressive zone and the other controlled by the tensile yielding of chords in tensile zone.As the sectional steel ratio and the yield strength of chord steel tube increase and the compressive strength of core concrete in chords decreases,the balanced point on the N-M interaction curve moves inward.Meanwhile,as the equivalent slenderness ratio of the member increases,the N-M interaction curve approaches a straight line.Moreover,compared to the bearing capacities calculated by existing formulas,the results predicted by the proposed N-M correlation equations show better agreement with the measured values.

关键词

钢管混凝土/四肢格构式构件/轴力-弯矩关系曲线/扩展参数分析/轴力-弯矩相关方程/换算长细比

Key words

concrete-filled steel tube(CFST)/four-legged latticed member/axial force-bending moment relationship curve/extended parametric analysis/axial force-bending moment correlation equation/equivalent slenderness ratio

分类

建筑与水利

引用本文复制引用

刘敏,马瑞,袁志强..四肢格构式钢管混凝土压弯构件承载力计算[J].建筑钢结构进展,2026,28(6):110-117,130,9.

基金项目

辽宁省教育厅基础研究项目(LJ232410147071) (LJ232410147071)

建筑钢结构进展

1671-9379

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