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Effect of Polarity and Oxide Fluxes on Weld-bead Geometry in Activated Tungsten Inert Gas (A-TIG) Welding
Suman Saha, Santanu Das
JWJ. 2020;38(4):380-388.   Published online 2020 July 14    DOI:

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Effect of Polarity and Oxide Fluxes on Weld-bead Geometry in Activated Tungsten Inert Gas (A-TIG) Welding
Journal of Welding and Joining. 2020;38(4):380-388   Crossref logo
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Effect of activating fluxes on weld bead morphology of P91 steel bead-on-plate welds by flux assisted tungsten inert gas welding process
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“Effects of using oxide fluxes as activating flux on Activated flux Tungsten Inert Gas welding” – A review
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Prediction of Bead Geometry Using a Two-Stage SVM–ANN Algorithm for Automated Tungsten Inert Gas (TIG) Welds
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Optimization of weldment in bead on plate welding of nickel based superalloy using Activated flux tungsten inert gas welding (A-TIG)
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Enhancement of activated tungsten inert gas (A-TIG) welding using multi-component TiO2-SiO2-Al2O3 hybrid flux
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Mathematical modeling of effect of polarity on weld bead geometry in submerged arc welding
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Effect of oxide fluxes on activated TIG welding of AISI 316L austenitic stainless steel
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