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初弯曲格构式轴压构件最大剪力的计算方法分析

秦快 刘占科 周蒙 马雄伟 常洲旗

建筑钢结构进展2026,Vol.28Issue(4):64-73,10.
建筑钢结构进展2026,Vol.28Issue(4):64-73,10.DOI:10.13969/j.jzgjgjz.20241015001

初弯曲格构式轴压构件最大剪力的计算方法分析

Calculation Method for the Maximum Shear Force of Latticed Axially Compressed Members with Initial Bending

秦快 1刘占科 2周蒙 1马雄伟 1常洲旗1

作者信息

  • 1. 兰州大学 土木工程与力学学院,兰州 730000
  • 2. 兰州大学 土木工程与力学学院,兰州 730000||兰州大学 西部灾害与环境力学教育部重点实验室,兰州 730000
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摘要

Abstract

In this paper,an expression for the maximum shear force of axially compressed members with initial bending failed with flexural buckling was derived firstly.Then,based on the extreme fiber yield criterion,a general formula for the maximum shear force was derived,and a formula of the maximum shear force,considering the equivalent initial eccentricity,was also proposed.A practical formula for the maximum shear force,which is overall conservative and applicable to nine structural steel grades in GB 50017-2017 and JGJ/T 483-2020,was obtained based on the formula for the maximum shear force considering the equivalent initial eccentricity,combined with experimental results from the literature.The results show that,in order to ensure the calculated value of the shear force of latticed axially compressed members is conservative,the classification of sections for latticed axial compression members failed with flexural buckling about the imaginary axis,required in the current standard"Standard for Design of Steel Structures"(GB 50017-2017),should be revised from Class b to Class c.Accordingly,the shear force of latticed axially compressed members should be determined by the proposed formula.The formulas provided in current national standards,such as GB 50017-2017,tend to be unsafe for determining the shear force of latticed axially compressed members.

关键词

格构式轴压构件/初弯曲/等效初偏心率/最大剪力设计值/稳定系数

Key words

latticed axially compressed member/initial bending/equivalent initial eccentricity/maximum shear design force/stability coefficient

分类

建筑与水利

引用本文复制引用

秦快,刘占科,周蒙,马雄伟,常洲旗..初弯曲格构式轴压构件最大剪力的计算方法分析[J].建筑钢结构进展,2026,28(4):64-73,10.

基金项目

国家自然科学基金(52278184),兰州大学2024年度研究生教育教学改革研究项目(YJSXM202412) (52278184)

建筑钢结构进展

1671-9379

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