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A unified model of transport phenomena in gas metal arc welding including electrode, arc plasma and molten pool
182
Citations
27
References
2004
Year
Electrical EngineeringMolten PoolEngineeringGas MetalFriction WeldingCorrosionWelding ProcessApplied PhysicsTransport PhenomenaPlasma PhysicsGlobular TransferWeld Pool SolidificationSolidificationHeat TransferPlasma ApplicationGas Discharge PlasmaArc Plasma
This paper presents a theoretical model for describing globular transfer in gas metal arc welding. The heat and mass transfer in the electrode, arc plasma and molten pool are considered in one unified model. Using the volume of fluid method, the transport phenomena are dynamically studied in the following processes: droplet formation and detachment, droplet flight in arc plasma, impingement of droplets on the molten pool and solidification after the arc extinguishes. The simulation of heat and mass transfer in the arc plasma considers the developing surface profile of the electrode and molten pool and also the effect of the flying droplet inside the arc plasma. Furthermore, the heat inputs to the electrode and the molten pool result from the simulation of the arc plasma. In addition, a He–Ne laser in conjunction with the shadow-graphing technique is used to observe the metal-transfer process. The theoretical predictions and experimental results are shown to be in good agreement.
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