In this study, fluid flow driven by a combination of electromagnetic force, buoyancy force, arc drag force, and surface tension gradient is numerically analyzed for a partially or fully penetrated weld pool in stationary gas tungsten arc welding (GTAW). Irregular shape of the weld pool and the moving liquid-solid interface is handled by a boundary-fitted-coordinates technique. Surface tension on the top and the bottom free surfaces of the weld pool is found to play a critical role in determining the flow pattern in the weld pool. The calculated GTA weld bead geometry compares favorably with experimental results. © 2000 Elsevier Science Ltd. All rights reserved.In this study, fluid flow driven by a combination of electromagnetic force, buoya...
We do not have permission to post this paper and do not have access to it through our databases. Ple...
This investigation is devoted to the study of welding and its effect on the workpiece, focusing on t...
A numerical study of three-dimensional heat transfer and fluid flow in a moving gas tungsten arc wel...
With several different fusion welding processes, the melted weld pool profile which ultimately solid...
International audienceThe fluid flow in weld pool can play a prominent role in the weld quality as w...
This article presents a mathematical model simulating the effects of surface tension (Marangoni effe...
International audienceA three-dimensional numerical model of Gas Tungsten Arc welding has been devel...
This paper extends a mathematical model and numerical techniques previously developed for simulating...
The article of record as published may be found at http://dx.doi.org/10.1080/10407789508913715A nume...
A numerical study of three-dimensional heat transfer and fluid flow in a moving gas metal are weldin...
In arc welding electromagnetic forces were traditionally thought to be the major cause of fluid moti...
MCWASP XIII - 17–22 June 2012, Schladming, AUtricheInternational audienceThe aim of this paper is to...
This study aims to reveal the cause of different weld formation quality for varying welding position...
This paper presents a three-dimensional simulation of stationary gas tungsten arc welding which stud...
Abstract:- The effects of the sign of the surface tension coefficient on turbulent weld pool convect...
We do not have permission to post this paper and do not have access to it through our databases. Ple...
This investigation is devoted to the study of welding and its effect on the workpiece, focusing on t...
A numerical study of three-dimensional heat transfer and fluid flow in a moving gas tungsten arc wel...
With several different fusion welding processes, the melted weld pool profile which ultimately solid...
International audienceThe fluid flow in weld pool can play a prominent role in the weld quality as w...
This article presents a mathematical model simulating the effects of surface tension (Marangoni effe...
International audienceA three-dimensional numerical model of Gas Tungsten Arc welding has been devel...
This paper extends a mathematical model and numerical techniques previously developed for simulating...
The article of record as published may be found at http://dx.doi.org/10.1080/10407789508913715A nume...
A numerical study of three-dimensional heat transfer and fluid flow in a moving gas metal are weldin...
In arc welding electromagnetic forces were traditionally thought to be the major cause of fluid moti...
MCWASP XIII - 17–22 June 2012, Schladming, AUtricheInternational audienceThe aim of this paper is to...
This study aims to reveal the cause of different weld formation quality for varying welding position...
This paper presents a three-dimensional simulation of stationary gas tungsten arc welding which stud...
Abstract:- The effects of the sign of the surface tension coefficient on turbulent weld pool convect...
We do not have permission to post this paper and do not have access to it through our databases. Ple...
This investigation is devoted to the study of welding and its effect on the workpiece, focusing on t...
A numerical study of three-dimensional heat transfer and fluid flow in a moving gas tungsten arc wel...