<p>In the present work, the influence of process parameters such as welding current (I), welding speed (S), and flux coating density (F) on different aspects of weld bead geometry for example depth of penetration (DOP), bead width (BW), depth to width ratio (D/W), and weld fusion zone area (WA) were investigated by using the central composite design (CCD). 9–12% Cr ferritic stainless steel (FSS) plates were welded using A-TIG welding. It was observed that all input variables have a direct influence on the DOP, BW, and D/W. However, flux coating density has no significant effect on WA. Mathematical models were generated from the obtained responses to predict the weld bead geometry. An optimized DOP, BW, D/W, and WA of 6.95 mm, 8.76 mm, 0.80,...
Bead-on-plate welds were carried out on AISI 316L (N) austenitic stainless steel (ASS) using flux co...
This study examines an application of response surface methodology to optimize heat input during TIG...
Tungsten Inert Gas (TIG) welding is otherwise known as the Gas Tungsten Arc soldering (GTAW) process...
This paper presents the optimisation of weld bead geometry, through Metal Inert Gas butt-welding. Ma...
Welding is a way of heating pieces of metal usingelectricity or flame so that they melt and stick to...
The activated TIG (ATIG) welding process mainly focuses on increasing the depth of penetration and t...
This study is centered on the application of response surface methodology to predict penetration are...
A-TIG welding is a welding method in which TIG welding is conducted by covering a thin layer of acti...
Melting efficiency is one among the vital factors regarded in Tungsten Inert Gas (TIG) welding while...
Abstract — The flux coated tungsten inert gas (A-TIG) welding mainly focusing on increasing depth of...
The Activated Tungsten Inert Gas welding (A-TIG) technique is characterized by its capability to imp...
AbstractThe activated TIG (ATIG) welding process mainly focuses on increasing the depth of penetrati...
The weld-bead geometry in 304LN and 316LN stainless steels produced by A-TIG welding plays an import...
In this study all-position automatic tungsten inert gas (TIG) welding was exploited to enhance quali...
In this study all-position automatic tungsten inert gas (TIG) welding was exploited to enhance quali...
Bead-on-plate welds were carried out on AISI 316L (N) austenitic stainless steel (ASS) using flux co...
This study examines an application of response surface methodology to optimize heat input during TIG...
Tungsten Inert Gas (TIG) welding is otherwise known as the Gas Tungsten Arc soldering (GTAW) process...
This paper presents the optimisation of weld bead geometry, through Metal Inert Gas butt-welding. Ma...
Welding is a way of heating pieces of metal usingelectricity or flame so that they melt and stick to...
The activated TIG (ATIG) welding process mainly focuses on increasing the depth of penetration and t...
This study is centered on the application of response surface methodology to predict penetration are...
A-TIG welding is a welding method in which TIG welding is conducted by covering a thin layer of acti...
Melting efficiency is one among the vital factors regarded in Tungsten Inert Gas (TIG) welding while...
Abstract — The flux coated tungsten inert gas (A-TIG) welding mainly focusing on increasing depth of...
The Activated Tungsten Inert Gas welding (A-TIG) technique is characterized by its capability to imp...
AbstractThe activated TIG (ATIG) welding process mainly focuses on increasing the depth of penetrati...
The weld-bead geometry in 304LN and 316LN stainless steels produced by A-TIG welding plays an import...
In this study all-position automatic tungsten inert gas (TIG) welding was exploited to enhance quali...
In this study all-position automatic tungsten inert gas (TIG) welding was exploited to enhance quali...
Bead-on-plate welds were carried out on AISI 316L (N) austenitic stainless steel (ASS) using flux co...
This study examines an application of response surface methodology to optimize heat input during TIG...
Tungsten Inert Gas (TIG) welding is otherwise known as the Gas Tungsten Arc soldering (GTAW) process...