© 2018 Institute of Materials and Machine Mechanics, Slovak Academy of Sciences. All rights reserved. In the present investigation, welding of 1 mm thick Ti-6Al-4V sheet has been done by Pulsed Wave (PW) Nd-YAG laser with a variation of laser power from 100 to 400W and welding speed from 4 to 6 mm s -1 . The microstructure and microhardness of the fusion zone indicate that the finely serrated and regular plate-shaped microstructures and the resultant hardness in the welds are the key factors behind the enhanced tensile strength of all joints. The weld bead size increases with decreasing welding speed and vice versa. The hardness increases around the heat affected zone as compared to that of the parent metal, and it is the maximum at the cen...
In this study, the weldability of 5.1-mm thick Ti-6Al-4V sheets in the mill-annealed condition was i...
AbstractComponent parts made of a commercial two-phase α + β Ti-6Al-4V alloy can be assembled by Nd:...
International audienceComponent parts made of a commercial two-phase α + β Ti-6Al-4V alloy can be as...
Titanium and their alloys have high strength to weight ratio, good corrosion resistance and high mel...
Annealed Ti\u20136Al\u20134V alloy sheets with 1 and 2 mm thickness are welded using a 4 kW Nd:YAG l...
AbstractIn this paper an experimental analysis on laser beam welding process of Ti6Al4V titanium all...
Laser welding method is widely used in the welding of different materials. Deep penetration, low hea...
Laser beam welding of commercially pure titanium sheets were carried out at different operating cond...
Ti-6Al-4V sheets, 3.2-mm in thickness, were butt welded using a continuous wave 4 kW Nd:YAG laser we...
Ti-6Al-4V is an alloy that is increasingly used in aeronautics due to its high mechanical properties...
International audienceOwing to its high strength-to-weight ratio, corrosion resistance and compatibi...
Pulsed Nd:YAG laser beam welding (P-LBW) and pulsed tungsten inert gas (P-TIG) welding were used to ...
This thesis examines the effect of welding on the microstructure and properties of commercially pure...
In this study, the weldability of 5.1-mm thick Ti-6Al-4V sheets in the mill-annealed condition was i...
AbstractComponent parts made of a commercial two-phase α + β Ti-6Al-4V alloy can be assembled by Nd:...
International audienceComponent parts made of a commercial two-phase α + β Ti-6Al-4V alloy can be as...
Titanium and their alloys have high strength to weight ratio, good corrosion resistance and high mel...
Annealed Ti\u20136Al\u20134V alloy sheets with 1 and 2 mm thickness are welded using a 4 kW Nd:YAG l...
AbstractIn this paper an experimental analysis on laser beam welding process of Ti6Al4V titanium all...
Laser welding method is widely used in the welding of different materials. Deep penetration, low hea...
Laser beam welding of commercially pure titanium sheets were carried out at different operating cond...
Ti-6Al-4V sheets, 3.2-mm in thickness, were butt welded using a continuous wave 4 kW Nd:YAG laser we...
Ti-6Al-4V is an alloy that is increasingly used in aeronautics due to its high mechanical properties...
International audienceOwing to its high strength-to-weight ratio, corrosion resistance and compatibi...
Pulsed Nd:YAG laser beam welding (P-LBW) and pulsed tungsten inert gas (P-TIG) welding were used to ...
This thesis examines the effect of welding on the microstructure and properties of commercially pure...
In this study, the weldability of 5.1-mm thick Ti-6Al-4V sheets in the mill-annealed condition was i...
AbstractComponent parts made of a commercial two-phase α + β Ti-6Al-4V alloy can be assembled by Nd:...
International audienceComponent parts made of a commercial two-phase α + β Ti-6Al-4V alloy can be as...