Bead contour is enhanced by surface tension in GTAW for which metal?

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Multiple Choice

Bead contour is enhanced by surface tension in GTAW for which metal?

Explanation:
Surface tension in the molten weld pool shapes the bead by pulling the liquid metal into a smooth, rounded contour as it solidifies. Aluminum stands out because its molten metal is extremely fluid and has a relatively high surface tension, so these forces act strongly to round and even out the bead. In GTAW of aluminum, using alternating current helps break through the oxide layer, allowing the surface-tension forces to act effectively and produce a well-contoured bead. Other metals listed can be hindered by oxide formation, higher viscosity, or different flow behavior, so the smoothing effect of surface tension on the bead is less pronounced for them.

Surface tension in the molten weld pool shapes the bead by pulling the liquid metal into a smooth, rounded contour as it solidifies. Aluminum stands out because its molten metal is extremely fluid and has a relatively high surface tension, so these forces act strongly to round and even out the bead. In GTAW of aluminum, using alternating current helps break through the oxide layer, allowing the surface-tension forces to act effectively and produce a well-contoured bead. Other metals listed can be hindered by oxide formation, higher viscosity, or different flow behavior, so the smoothing effect of surface tension on the bead is less pronounced for them.

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