AbstractIn this paper an experimental analysis on laser beam welding process of Ti6Al4V titanium alloy was performed. Butt joints with a thickness of 2mm were produced and assessed. A high brightness fiber laser was adopted to carry out the analysis. No filler wire and shaped grooves were used. An experimental plan was implemented keeping constant the laser power and varying the welding speed. A proper device was adopted to prevent oxidation phenomena that involve Ti at high temperatures reached during the thermal process. The geometric characteristics of the welding beads were studied through metallographic inspection of the cross sections. Vickers micro-hardness tests were conducted at the mid thickness of the cross sections of the joints...
In the present work, effect of process parameter such as laser power, welding speed, size of beam di...
Laser welding technique has recently spread quickly thanks to its numerous advantages compared to tr...
Titanium and its alloys are nowadays widely used in many sectors: in the medical field (orthopedic a...
AbstractIn this paper an experimental analysis on laser beam welding process of Ti6Al4V titanium all...
Abstract: In this paper the authors report the study done on welded Ti-6Al-4V alloy sheets by fricti...
Titanium alloy Ti6Al4V has been widely applied to medical, automotive, and aerospace industries due ...
Purpose: The primary purpose of the study was the metallurgical characterization of laser welds. The...
This paper presents the effects of the post welding heat treatments (PWHT) performed at 350 °C and 4...
Abstract Ti6Al4V alloy exhibits an excellent potential for biomechanical applications as well as st...
This research work deals with the most commonly used titanium alloy, Ti6Al4V. Lap and butt laser wel...
The article deals with laser beam welding of Ti-6Al-4V plates for aerospace applications. A number o...
Dissimilar metal welding involves the joining of two or more different pure metals or alloys, usuall...
Butt welding of commercially pure titanium Grade 1 and Ti6Al4V alloy sheets using a pulsed Nd:YAG la...
International audienceOwing to its high strength-to-weight ratio, corrosion resistance and compatibi...
In this work thin sheets of Ti–6Al–4V were full penetration welded using a 5 kW fibre laser in order...
In the present work, effect of process parameter such as laser power, welding speed, size of beam di...
Laser welding technique has recently spread quickly thanks to its numerous advantages compared to tr...
Titanium and its alloys are nowadays widely used in many sectors: in the medical field (orthopedic a...
AbstractIn this paper an experimental analysis on laser beam welding process of Ti6Al4V titanium all...
Abstract: In this paper the authors report the study done on welded Ti-6Al-4V alloy sheets by fricti...
Titanium alloy Ti6Al4V has been widely applied to medical, automotive, and aerospace industries due ...
Purpose: The primary purpose of the study was the metallurgical characterization of laser welds. The...
This paper presents the effects of the post welding heat treatments (PWHT) performed at 350 °C and 4...
Abstract Ti6Al4V alloy exhibits an excellent potential for biomechanical applications as well as st...
This research work deals with the most commonly used titanium alloy, Ti6Al4V. Lap and butt laser wel...
The article deals with laser beam welding of Ti-6Al-4V plates for aerospace applications. A number o...
Dissimilar metal welding involves the joining of two or more different pure metals or alloys, usuall...
Butt welding of commercially pure titanium Grade 1 and Ti6Al4V alloy sheets using a pulsed Nd:YAG la...
International audienceOwing to its high strength-to-weight ratio, corrosion resistance and compatibi...
In this work thin sheets of Ti–6Al–4V were full penetration welded using a 5 kW fibre laser in order...
In the present work, effect of process parameter such as laser power, welding speed, size of beam di...
Laser welding technique has recently spread quickly thanks to its numerous advantages compared to tr...
Titanium and its alloys are nowadays widely used in many sectors: in the medical field (orthopedic a...