In this work, a 5754 Al alloy and T40 were joined in butt configuration by focusing a fiber laser onto the titanium side, close to the weld centerline (offset). The keyhole was made entirely of titanium, and the fusion of the aluminum was achieved by heat conduction. Neither filler metal nor chamfering was necessary to produce a sound, dissimilar weld. The assembly was free from porosity and spatter defects. The mechanical properties were satisfactory. The energy input, the laser offset, and their interaction had statistically significant effects on the ultimate tensile strength. The findings of this investigation prove the robustness and suitability of fiber laser offset welding for Al–Ti weld fabrication
AbstractIn this paper a simple and versatile model for simulating the laser welding process of light...
Titanium alloy Ti6Al4V has been widely applied to medical, automotive, and aerospace industries due ...
Laser-induced reactive wetting and brazing of T40 titanium with A5754 aluminum alloy with 1.5 mm thi...
In this work, a 5754 Al alloy and T40 were joined in butt configuration by focusing a fiber laser on...
Dissimilar metal welding involves the joining of two or more different pure metals or alloys, usuall...
Laser assisted joining of AA5754 aluminum alloy to T40 titanium with use of Al-Si filler wires was c...
Dissimilar metal welding involves the joining of two or more different pure metals or alloys, usuall...
The tensile strength of direct AA5754/Ti6Al4V joints performed by high speed Yb:YAG laser welding is...
In this paper, the feasibility of using a fiber laser to perform a dissimilar metal joining was expl...
Dissimilar Ti–Al laser weldings are very interesting due to their difficulties in being processed be...
This paper presents the effects of the post welding heat treatments (PWHT) performed at 350 °C and 4...
Laser-induced reactive wetting and brazing of T40 titanium with A5754 aluminum alloy with 1.5 mm thi...
Welding between Fe and Al alloys is difficult because of a significant difference in thermal propert...
AbstractAluminum alloys are widely spread in many industrial sectors due to their desirable characte...
Welding between Fe and Al alloys is difficult because of a significant difference in thermal propert...
AbstractIn this paper a simple and versatile model for simulating the laser welding process of light...
Titanium alloy Ti6Al4V has been widely applied to medical, automotive, and aerospace industries due ...
Laser-induced reactive wetting and brazing of T40 titanium with A5754 aluminum alloy with 1.5 mm thi...
In this work, a 5754 Al alloy and T40 were joined in butt configuration by focusing a fiber laser on...
Dissimilar metal welding involves the joining of two or more different pure metals or alloys, usuall...
Laser assisted joining of AA5754 aluminum alloy to T40 titanium with use of Al-Si filler wires was c...
Dissimilar metal welding involves the joining of two or more different pure metals or alloys, usuall...
The tensile strength of direct AA5754/Ti6Al4V joints performed by high speed Yb:YAG laser welding is...
In this paper, the feasibility of using a fiber laser to perform a dissimilar metal joining was expl...
Dissimilar Ti–Al laser weldings are very interesting due to their difficulties in being processed be...
This paper presents the effects of the post welding heat treatments (PWHT) performed at 350 °C and 4...
Laser-induced reactive wetting and brazing of T40 titanium with A5754 aluminum alloy with 1.5 mm thi...
Welding between Fe and Al alloys is difficult because of a significant difference in thermal propert...
AbstractAluminum alloys are widely spread in many industrial sectors due to their desirable characte...
Welding between Fe and Al alloys is difficult because of a significant difference in thermal propert...
AbstractIn this paper a simple and versatile model for simulating the laser welding process of light...
Titanium alloy Ti6Al4V has been widely applied to medical, automotive, and aerospace industries due ...
Laser-induced reactive wetting and brazing of T40 titanium with A5754 aluminum alloy with 1.5 mm thi...