AbstractThe effect of grain refining elements such as titanium (Ti) on mechanical properties of AISI 430 ferritic stainless steel welds through gas tungsten arc welding process was studied. Titanium powder of -100μm mesh was added in the range from 1g to 3g between the butt joint of ferritic stainless steel. In order to investigate the influence of post- weld heat treatment on the microstructure and mechanical properties of welds, post-weld annealing was adopted at 830°C, 30min holding followed by water quenching. Residual stresses and corrosion behaviour of ferritic stainless steel welds was also studied. From this investigation, it is observed that the joints made by the addition of 2g Ti (0.7wt %) in post-weld annealed condition led to i...
This paper deals with the issue of welding two different materials - titanium and stainless steel (U...
Ferritic stainless steel (FSS) are engineering alloys with high strength, improved ductility and bet...
Many engineering applications are in need of high strength and low weight alloys; titanium and alumi...
AbstractThe effect of grain refining elements such as titanium (Ti) on mechanical properties of AISI...
AbstractThe influence of grain refining elements such as copper (Cu) and aluminium (Al) on mechanica...
Abstract: An innovative yet simple technique for the inoculation of the weld pool of commercial AISI...
Ferritic stainless steel is utilized to fabricate automotive exhaust systems using a ferritic weld m...
Improving the strength properties of ferritic stainless steel welds is associated with reducing exce...
The ferritic stainless steel is a low cost alternative to the most often adopted austenitic stainles...
Ferritic stainless steel (FSS) are engineering alloys with high strength, improved ductility and bet...
Stainless steels (SS) in automobile sector were previously incorporated mainly due to their decorati...
The applicability of ferritic stainless steel is restricted due to its low weldability, and this can...
The applicability of ferritic stainless steel is restricted due to its low weldability, and this can...
Ferritic stainless steel is typically used in the automotive industry to fabricate welded tube that ...
Titanium alloys have attractive properties that have been widely used in various fields due to these...
This paper deals with the issue of welding two different materials - titanium and stainless steel (U...
Ferritic stainless steel (FSS) are engineering alloys with high strength, improved ductility and bet...
Many engineering applications are in need of high strength and low weight alloys; titanium and alumi...
AbstractThe effect of grain refining elements such as titanium (Ti) on mechanical properties of AISI...
AbstractThe influence of grain refining elements such as copper (Cu) and aluminium (Al) on mechanica...
Abstract: An innovative yet simple technique for the inoculation of the weld pool of commercial AISI...
Ferritic stainless steel is utilized to fabricate automotive exhaust systems using a ferritic weld m...
Improving the strength properties of ferritic stainless steel welds is associated with reducing exce...
The ferritic stainless steel is a low cost alternative to the most often adopted austenitic stainles...
Ferritic stainless steel (FSS) are engineering alloys with high strength, improved ductility and bet...
Stainless steels (SS) in automobile sector were previously incorporated mainly due to their decorati...
The applicability of ferritic stainless steel is restricted due to its low weldability, and this can...
The applicability of ferritic stainless steel is restricted due to its low weldability, and this can...
Ferritic stainless steel is typically used in the automotive industry to fabricate welded tube that ...
Titanium alloys have attractive properties that have been widely used in various fields due to these...
This paper deals with the issue of welding two different materials - titanium and stainless steel (U...
Ferritic stainless steel (FSS) are engineering alloys with high strength, improved ductility and bet...
Many engineering applications are in need of high strength and low weight alloys; titanium and alumi...