The use of a tungsten inert gas (TIG) welding torch has resulted in the development of an economical route for surface engineering of alloys, giving similar results to the more expensive high power laser. Due to the preheating generated by both techniques, the extent of the temperature rise is sufficient to produce significant changes to the melt dimensions, microstructure and properties between the first and last tracks melted during the coating of a complete surface. The present study examines if similar changes can occur between the start and finish locations of a single track of 50 mm length. The results show that for a TIG melted surface of a microalloy steel substrate, with or without incorporating preplaced SiC particles, in either a...
Surface alloying with ceramic powder uses a high energy input to create composite coating that provi...
Hardsurface layer was developed by tungsten inert gas (TIG) surface melting on AISI 4340 alloy steel...
Advances in technological development in aerospace, automotive, power plant, chemical plant and mari...
The use of a tungsten inert gas (TIG) welding torch has resulted in the development of an economical...
A surface engineering technique based on a Tungsten Inert Gas (TIG) torch was used to melt single tr...
The application of surface engineering techniques to improve the surface properties of carbon steels...
Surface cladding utilizes a high energy input to deposit a layer on substrate surfaces providing pr...
TIG torch welding technique is a conventional melting technique for the cladding of metallic materi...
Surface cladding utilizes a high energy input to deposit a layer on substrate surfaces providing pro...
Surface cladding utilizes a high energy input to deposit a layer on substrate surfaces providing pro...
Surface metal matrix composites have been developed to enhance properties such as erosion, wear and ...
Tungsten inert gas (TIG) melting process is increasingly find successful application in many aspect...
Surface alloying with ceramic powder uses a high energy input to create composite coating that provi...
Despite their excellence qualities, DSS shows decrease in performance under aggressive environment. ...
Surface alloying with ceramic powder uses a high energy input to create composite coating that provi...
Surface alloying with ceramic powder uses a high energy input to create composite coating that provi...
Hardsurface layer was developed by tungsten inert gas (TIG) surface melting on AISI 4340 alloy steel...
Advances in technological development in aerospace, automotive, power plant, chemical plant and mari...
The use of a tungsten inert gas (TIG) welding torch has resulted in the development of an economical...
A surface engineering technique based on a Tungsten Inert Gas (TIG) torch was used to melt single tr...
The application of surface engineering techniques to improve the surface properties of carbon steels...
Surface cladding utilizes a high energy input to deposit a layer on substrate surfaces providing pr...
TIG torch welding technique is a conventional melting technique for the cladding of metallic materi...
Surface cladding utilizes a high energy input to deposit a layer on substrate surfaces providing pro...
Surface cladding utilizes a high energy input to deposit a layer on substrate surfaces providing pro...
Surface metal matrix composites have been developed to enhance properties such as erosion, wear and ...
Tungsten inert gas (TIG) melting process is increasingly find successful application in many aspect...
Surface alloying with ceramic powder uses a high energy input to create composite coating that provi...
Despite their excellence qualities, DSS shows decrease in performance under aggressive environment. ...
Surface alloying with ceramic powder uses a high energy input to create composite coating that provi...
Surface alloying with ceramic powder uses a high energy input to create composite coating that provi...
Hardsurface layer was developed by tungsten inert gas (TIG) surface melting on AISI 4340 alloy steel...
Advances in technological development in aerospace, automotive, power plant, chemical plant and mari...