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大吨位销轴连接节点的静力性能研究

周尧 丁颖楠 郭小农

建筑钢结构进展2024,Vol.26Issue(6):58-65,75,9.
建筑钢结构进展2024,Vol.26Issue(6):58-65,75,9.DOI:10.13969/j.cnki.cn31-1893.2024.06.006

大吨位销轴连接节点的静力性能研究

Static Performance of Large Tonnage Pin-Connection Joints

周尧 1丁颖楠 2郭小农2

作者信息

  • 1. 上海金桥(集团)有限公司,上海 200136
  • 2. 同济大学 土木工程学院,上海 200092
  • 折叠

摘要

Abstract

Pin-connection joints have been widely used in practical engineering,but the full-scale test of large tonnage pin-connection joints is still rare.The study on the interaction between pins and trunnion plates and its impact on the load-bearing capacity is still insufficient.To investigate the effects of factors such as the installation of internal stiffeners,manufacturing errors of pins,and looseness of pin cover plates on the mechanical properties of pin-connection joints,two full-scale 2 000 tons specimens were tested and ten finite element models were analyzed.The results show that the stiffener has a more significant effect on limiting the deformation of the inner trunnion plate.However,the stiffener has a weaker effect on limiting the relative deformation of the outer trunnion plate.The stiffener can effectively reduce the stress level at the middle of the pin,but it will also exacerbate stress concentration at the end of the pin.Increasing the gap between the pin and pinhole will result in stress concentration on the pinhole wall under the compression of pin.Insufficient stiffness of the pin cover plate will increase the stress level of the pin.The machining accuracy of the pinhole should be ensured during manufacturing.During installation,it should be ensured that the pin cover plate has sufficient stiffness and is reliably connected to the pin.The research conclusions of this paper can provide a reference for the design and application of similar large tonnage pin-connection joints.

关键词

销轴连接节点/静力性能/试验研究/有限元分析

Key words

pin-connection joint/static performance/test study/finite element analysis

分类

建筑与水利

引用本文复制引用

周尧,丁颖楠,郭小农..大吨位销轴连接节点的静力性能研究[J].建筑钢结构进展,2024,26(6):58-65,75,9.

基金项目

国家自然科学基金(51878473) (51878473)

建筑钢结构进展

OA北大核心CSTPCD

1671-9379

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