• CN:11-2187/TH
  • ISSN:0577-6686

›› 2007, Vol. 43 ›› Issue (7): 152-157.

• 论文 • 上一篇    下一篇

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承受轴压的X管节点极限荷载有限元分析

邵永波;韦胜平   

  1. 烟台大学土木工程学院
  • 发布日期:2007-07-15

FINITE ELEMENT ANALYSIS OF ULTIMATE LOAD FOR TUBULAR X-JOINTS SUBJECTED TO AXIAL COMPRESSION LOADS

SHAO Yongbo;WEI Shengping   

  1. School of Civil Engineering, Yantai University
  • Published:2007-07-15

摘要: 采用有限元法分析轴力作用下X管节点所能承受的极限荷载。在对X管节点进行数值模拟的时候,考虑焊缝对其强度的影响。在有限元分析中,采用分区网格产生法形成X管节点的有限元网格,即把整个X管节点根据计算精度的需要划分成几个不同的子区域,每个子区域的网格单独产生,整个管节点的有限元网格通过合并各个子区域的网格而形成。这种分区网格产生法可以针对不同应力梯度的区域形成不同质量和精度的网格,从而可以保证有限元结果的准确性并节省存储空间和计算时间。在分区网格法的基础上,用ABAQUS(2000)通用软件分析X管节点在承受压力作用时的荷载和位移之间的关系,并得到X管节点所能承受的极限荷载大小。此外,通过对50个X管节点模型进行分析,研究几何参数以及材料参数对X管节点极限荷载的影响。

关键词: X管节点, 材料参数, 分区网格产生法, 焊缝, 极限荷载, 几何参数, 动力学模型, 时变效应, 行星轮系, 振动传递路径

Abstract: The ultimate load of tubular X-joints subjected to axial loads is analyzed using finite element method. The effect of the weld size on the ultimate load is considered in the numerical modelling for tubular X-joints. In finite element analysis, sub-zone mesh generation method is used to produce the mesh of a tubular X-joint. The entire tubular X-joint is divided into several different zones according to the requirement of the computation accuracy. The mesh of each zone is generated separately, and the finite element mesh of the entire structure is obtained by merging the meshes of all the sub-zones. This sub-zone mesh generation method can produce meshes of dif-ferent qualities according to different stress gradients. Based on this method, the relationship between the applied loads and the displacement of tubular X-joints subjected to axial compression loads is analyzed using ABAQUS (2000) software, and the ultimate load of X-joints is then obtained. Thereafter, through the analysis of 50 models of tubular X-joints, the effects of geometrical parameters and material parameters on the ultimate load of tubular X-joints are investigated.

Key words: Sub-zone mesh generation method, Geometrical parameters, Material parameters, Tubular X-joints, Ultimate load, Weld, Dynamic models, Planetary gear sets, Time-varying effect, Transmission paths

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