• CN:11-2187/TH
  • ISSN:0577-6686

›› 2012, Vol. 48 ›› Issue (8): 54-59.

• 论文 • 上一篇    下一篇

基于轮廓法测试焊接件内部残余应力

刘川;庄栋   

  1. 江苏科技大学先进焊接技术省级重点实验室;西安交通大学材料科学与工程学院
  • 发布日期:2012-04-20

Internal Welding Residual Stress Measurement Based on Contour Method

LIU Chuan;ZHUANG Dong   

  1. Provincial Key Lab of Advanced Welding Technology, Jiangsu University of Science and Technology School of Materials Science and Engineering, Xi’an Jiaotong University
  • Published:2012-04-20

摘要: 采用轮廓法测试低碳钢堆焊件和T形焊接结构的内部纵向残余应力。将焊接件沿垂直焊缝平面切割开,精确测试切割面的变形轮廓,然后将测试轮廓进行拟合,并将拟合结果作为有限元模型的边界条件进行弹性计算从而获得内部垂直切割平面的应力分布。比较不同曲面拟合方法拟合得到的切割面轮廓形貌;将轮廓法测试的焊接残余应力结果和热弹塑性三维有限元计算结果进行比较分析。研究结果表明:轮廓法能准确高效测试较厚焊接件内部整个截面上的纵向应力分布;由于线切割和轮廓测量误差造成轮廓法测得的应力在约2 mm厚表层区域的幅值和有限元计算结果相比误差较大,但轮廓法测试结果仍能反映出表层应力的分布趋势和特征;线切割断丝造成切割面的局部轮廓误差,会引起断丝区域测试应力出现突变。

关键词: 残余应力, 焊接, 轮廓测量, 有限元法

Abstract: The internal welding longitudinal residual stress is measured using contour method for a bead-on-plate welding specimen and a T type welding structure. The welded specimen is cut along a plane perpendicular to the weld line, and the deformed profiles (contours) of the cut surfaces are precisely measured. Then, the measured contours are fitted and taken as displacement boundary conditions to an elastic finite element model to calculate the corresponding stresses normal to the cutting plane. The fitted contours of the cut surfaces with different fitting methods are compared, and the measuring results are also compared with those of three-dimensional thermal-elastic-plastic finite element simulation. Investigated results show that the internal residual stress of thick welded structures can be measured with good precision by the contour method; due to the errors introduced by the electric discharge machining (EDM) and the profile measurement, the subsurface residual stress within 2 mm depth measured by the contour method would be inaccurate in magnitude, but the good distribution trend can be got by the method; broken wire during EDM process can lead to local profile error that produce a abrupt change in measured stress.

Key words: Contour measurement, Finite element method, Residual stresses, Welding

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