Numerical investigation of thermal residual stress distribution for the sustainability of laser welded joints of dissimilar materials

被引:2
|
作者
Sarathi Ghosh P. [1 ]
Sen A. [2 ]
Chattopadhyaya S. [2 ]
Sharma S. [3 ,4 ]
Singh Chohan J. [4 ]
Kumar R. [4 ]
Singh S. [4 ]
Joshi A. [5 ]
机构
[1] Department of Mechanical Engineering, Indian Institute of Technology IIT(ISM), Jharkhand
[2] Department of Mechanical Engineering, Calcutta Institute of Technology, Howrah
[3] Department of Mechanical Engg., IK Gujral Punjab Technical University, Main campus, Kapurthala
[4] University Centre for Research & Development, Chandigarh University, Punjab, Mohali
[5] Division of Research and Innovation, Uttaranchal University, Uttarakhand, Dehradun
来源
关键词
Dissimilar joining; Laser welding; Sustainability; Temperature dependent physical properties; Thermal cycle; Thermo-mechanical;
D O I
10.1016/j.matpr.2022.11.097
中图分类号
学科分类号
摘要
In this work, a three-dimensional (3D) time dependent finite element method is used to simulate the thermo-mechanical behavior of laser welded joints. Laser welding of two dissimilar materials (AISI 316L and Ti6Al4V) of 2 mm thickness has been considered while modeling in COMSOL multiphysics with a coupling of heat transfer and solid mechanics module. A total of six temperature dependent physical properties, i.e. density, specific heat, thermal conductivity, coefficient of thermal expansion, Young's modulus, and Poisson's ratio have been considered for making the numerical model more realistic. The experimental results show that AISI 316L experiences more than 2 times more maximum stresses than Ti6Al4V near the weld bead region during the process. High value of Von mishes stress in the welded zone can be observed due to high temperature gradients of welds. The simulated value of residual after one entire thermal cycle is near to 80 MPa on a point over weld bead. © 2022
引用
收藏
页码:A16 / A21
页数:5
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