Experimental and Numerical Simulation to Study the Reduction of Welding Residual Stress by Ultrasonic Impact Treatment

残余应力 材料科学 复合材料 极限抗拉强度 焊接 横截面 压力(语言学) 应力松弛 计算机模拟 有限元法 缩进 结构工程 机械 蠕动 工程类 哲学 语言学 物理
作者
J.F. Chen,Jingyu Chu,Wenchun Jiang,Bin Yao,Fan Zhou,Zhenbo Wang,Pengcheng Zhao
出处
期刊:Materials [Multidisciplinary Digital Publishing Institute]
卷期号:13 (4): 837-837 被引量:31
标识
DOI:10.3390/ma13040837
摘要

In this study, the effects of ultrasonic impact treatment (UIT) on the residual stress in a repair welding joint are investigated by experimental and finite element methods. A three-dimensional numerical analysis approach including a thermomechanical-coupled welding simulation and dynamic elastic-plastic UIT simulation is developed, which has been validated by X-ray diffraction measurement and indentation strain method. The results show that longitudinal residual stresses basically turned into the small tensile stress state from the large tensile stress state, and transverse residual stresses have mainly turned into compressive stresses from large tensile stress after the UIT. In the thickness direction, the average decrease of longitudinal residual stress is 259.9 MPa, which is larger than the 149.1 MPa of transverse residual stress. The calculated residual stress distribution after the UIT of the thin plate is compared with that of the thick plate in the literature, with the results showing the stress accumulation layer inside the thick plate. The simulation results show that the elastic strains are decreased slightly and the equivalent plastic strain is increased markedly after UIT, which explains the mechanism of residual stress relaxation.
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