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钢结构模块间梁-梁型节点抗拉与抗剪性能研究

王彦博 闫云鹏 毛磊 曹轲 王开强 李国强

建筑钢结构进展2026,Vol.28Issue(3):37-47,11.
建筑钢结构进展2026,Vol.28Issue(3):37-47,11.DOI:10.13969/j.jzgjgjz.20250902002

钢结构模块间梁-梁型节点抗拉与抗剪性能研究

Research on Tensile and Shear Behavior of Inter-Module Beam-to-Beam Joint for Modular Steel Buildings

王彦博 1闫云鹏 2毛磊 3曹轲 4王开强 5李国强1

作者信息

  • 1. 同济大学 土木工程学院,上海 200092||同济大学 土木工程防灾减灾全国重点实验室,上海 200092
  • 2. 同济大学 土木工程学院,上海 200092
  • 3. 艾奕康设计与咨询(深圳)有限公司上海分公司,上海 200433
  • 4. 重庆大学 管理科学与房地产学院,重庆 400031
  • 5. 中国建筑先进技术研究院,武汉 430070
  • 折叠

摘要

Abstract

Modular steel buildings are characterized by high-degree integration,short on-site construction time,and recyclability.As the most critical component in structural load-bearing and installation,inter-module connections must balance construction convenience with reliable force transfer.To address this,this paper proposes a beam-to-beam joint configuration suitable for multi-story and high-rise modular buildings.This joint utilizes cover plates and bolts to connect adjacent module beams,offering minimal construction space requirements,operational convenience,and clear force transfer paths,thereby providing an efficient connection solution for modular steel structures in high-rise applications.First,experimental studies were conducted to investigate the load-bearing behavior and failure modes of the joint under tensile and shear loading.Subsequently,theoretical analysis was employed to propose calculation methods for the tensile and shear design load-bearing capacities of the joint.Finally,the accuracy of the proposed theoretical calculation methods was verified through comparison of theoretical results with experimental data.The findings may provide reference for the design analysis and engineering application of this joint type.

关键词

模块化钢结构/模块间梁-梁型节点/抗拉性能/抗剪性能/试验研究/计算方法

Key words

modular steel building/inter-module beam-to-beam joint/tensile behavior/shear behavior/experimental study/calculation method

分类

建筑与水利

引用本文复制引用

王彦博,闫云鹏,毛磊,曹轲,王开强,李国强..钢结构模块间梁-梁型节点抗拉与抗剪性能研究[J].建筑钢结构进展,2026,28(3):37-47,11.

基金项目

国家重点研发计划(2023YFC3806602) (2023YFC3806602)

建筑钢结构进展

1671-9379

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