EFFECT OF WELDING RESIDUAL STRESS ON CRACK PROPAGATION AND FATIGUE PERFORMANCE OF HIGH STRENGTH STEEL SPOT WELDING JOINT
|更新时间:2024-07-05
|
EFFECT OF WELDING RESIDUAL STRESS ON CRACK PROPAGATION AND FATIGUE PERFORMANCE OF HIGH STRENGTH STEEL SPOT WELDING JOINT
Journal of Mechanical Strength Vol. 46, Issue 2, Pages: 439-445(2024)
作者机构:
1. 重庆交通大学机电与车辆工程学院
作者简介:
基金信息:
The project supported by the Special Key Projects of Technological Innovation and Application Development in Chongqing(No. este2021jsex-dxwtBX0022), the Chongqing Postdoctoral Special Funding Project(No. Xm2017034), and the National Key R&D Program Project (No.2020YFF0404209).
LUO JiaYuan, LI Xin, TAN Chao. EFFECT OF WELDING RESIDUAL STRESS ON CRACK PROPAGATION AND FATIGUE PERFORMANCE OF HIGH STRENGTH STEEL SPOT WELDING JOINT. [J]. Journal of Mechanical Strength , 2024,46(2):439-445.
DOI:
LUO JiaYuan, LI Xin, TAN Chao. EFFECT OF WELDING RESIDUAL STRESS ON CRACK PROPAGATION AND FATIGUE PERFORMANCE OF HIGH STRENGTH STEEL SPOT WELDING JOINT. [J]. Journal of Mechanical Strength , 2024,46(2):439-445. DOI: 10.16579/j.issn.1001.9669.2024.02.024.
EFFECT OF WELDING RESIDUAL STRESS ON CRACK PROPAGATION AND FATIGUE PERFORMANCE OF HIGH STRENGTH STEEL SPOT WELDING JOINT
Due to the high stress concentration of spot welding joints
it is very easy to initiate fatigue cracks at the edge of the nugget
and the residual stress produced by spot welding will affect its propagation. To explore the influence of spot welding residual stress on fatigue crack propagation
a three-dimensional finite element simulation model of DP600 high strength steel spot welding joint was established. Based on the thermal-elastic-plastic theory
the residual stress field of spot welding was solved. On this basis
the local stress intensitv factor (SIF) solution of the kinked crack with and without residual stress was calculated. By analvzing the variation curve of the local stress intensity factor at the deepest point of the crack with the crack depth ratio under the two conditions
the influence of residual stress of spot welding on the propagation of kinked crack was studied. Based on the fracture mechanics theory
the improved two-parameter model is used to predict the fatigue life wit th and without residual stress. The results show that the residual stress of spot welding significantly increases the local stress intensity factor
and the influence of residual stress on it increases with the increase of crack depth ratio. Considering the residual stress
the overall crack propagation trend remains unchanged but the propagation rate increases significantly
and the fatigue life decreases from 35 616 times to 12 564 times.
关键词
点焊残余应力折线裂纹应力强度因子疲劳寿命
Keywords
Spot welding residual stressKinked crackStress intensity factorFatigue life