This paper presents a numerical and infrared experimental study of thermal and grain growth behavior during argon tungsten arc welding of 443 stainless steel. A 3D finite element model was proposed to simulate the welding process. The simulations were carried out via the Ansys Parametric Design Language (APDL) available in the finite-element code, ANSYS. To validate the simulation accuracy, a series of experiments using a fully-automated welding process was conducted. The results of the numerical analysis show that the simulation weld bead size and the experiment results have good agreement. The grain growth in the heat-affected zone of 443 stainless steel is influenced via three factors: (1) the thermal cycle experienced; (2) grain boundar...
A conventional gas metal arc welding (GMAW) butt-joining process has been modeled using a two-way fu...
In recent years there has been a significant growth in the use of the automated and/or robotic weldi...
In the present work, the prediction of residual stresses and distortion due to GTA welding process, ...
In this study, gas tungsten arc welding of ferritic stainless steel and grain size distribution i...
International audienceThe purpose of this article is to investigate the influence of growth kinetic ...
In this paper, a three-dimensional finite element model has been developed to simulate dynamically t...
In this paper we discuss the iterative procedure employed for non-linear heat transfer analysis usin...
This presentation describes both the experimental measurement and finite element analysis used to st...
In this study we focus on finite element simulation of gas tungsten arc welding (GTAW) of AA2219 alu...
Engineering components operating at high temperature often fail due to the initiation and growth of ...
This study involves the validating of thermal analysis during TIG Arc welding of 1.4418 steel using ...
Networking three fields of welding--thermal, microstructure, and stress--was attempted and produced ...
Stainless steel is widely used in pipelines and structural components as the material of choice. Whe...
Abstract- This work deals with the finite element analysis of Ferritic Stainless Steel using single ...
Gas Metal Arc Welding (GMAW) process was analyzed by combining a finite element thermomechanical mod...
A conventional gas metal arc welding (GMAW) butt-joining process has been modeled using a two-way fu...
In recent years there has been a significant growth in the use of the automated and/or robotic weldi...
In the present work, the prediction of residual stresses and distortion due to GTA welding process, ...
In this study, gas tungsten arc welding of ferritic stainless steel and grain size distribution i...
International audienceThe purpose of this article is to investigate the influence of growth kinetic ...
In this paper, a three-dimensional finite element model has been developed to simulate dynamically t...
In this paper we discuss the iterative procedure employed for non-linear heat transfer analysis usin...
This presentation describes both the experimental measurement and finite element analysis used to st...
In this study we focus on finite element simulation of gas tungsten arc welding (GTAW) of AA2219 alu...
Engineering components operating at high temperature often fail due to the initiation and growth of ...
This study involves the validating of thermal analysis during TIG Arc welding of 1.4418 steel using ...
Networking three fields of welding--thermal, microstructure, and stress--was attempted and produced ...
Stainless steel is widely used in pipelines and structural components as the material of choice. Whe...
Abstract- This work deals with the finite element analysis of Ferritic Stainless Steel using single ...
Gas Metal Arc Welding (GMAW) process was analyzed by combining a finite element thermomechanical mod...
A conventional gas metal arc welding (GMAW) butt-joining process has been modeled using a two-way fu...
In recent years there has been a significant growth in the use of the automated and/or robotic weldi...
In the present work, the prediction of residual stresses and distortion due to GTA welding process, ...