Laser welding has been increasingly utilized to manufacture a variety of components thanks to its high quality and speed. For components with complex shapes, the welding position needs be continuously adjusted during laser welding, which makes it necessary to know the effects of the welding position on the quality of the laser welds. In this paper, the weld quality under two (flat and horizontal) welding positions were studied comparatively in the laser welding of Ti6Al4V titanium alloy, in terms of weld profiles, process porosity, and static tensile strengths. Results show that the flat welding position led to better weld profiles, less process porosity than that of the horizontal welding position, which resulted from the different actions...
This study considers welding of Ti-6Al-4V, which is widely used in the chemical, automotive, aerospa...
Preventing the formation of brittle intermetallic compounds and defects or porosity in the fusion zo...
AbstractIn this paper an experimental analysis on laser beam welding process of Ti6Al4V titanium all...
To obtain satisfactory welds in positional laser beam welding, it is necessary to know how process p...
Ti-6Al-4V sheets, 3.2-mm in thickness, were butt welded using a continuous wave 4 kW Nd:YAG laser we...
Lightweight structures for aerospace applications can be achieved by the use of materials with a hig...
Purpose: The primary purpose of the study was the metallurgical characterization of laser welds. The...
Ti-6Al-4V is an alloy that is increasingly used in aeronautics due to its high mechanical properties...
The article deals with laser beam welding of Ti-6Al-4V plates for aerospace applications. A number o...
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...
Owing to the high specific strength and excellent corrosion resistance, Ti-6Al-4V has been widely ap...
Dissimilar Ti–Al laser weldings are very interesting due to their difficulties in being processed be...
Laser welding will be an important welding process for different applications in aerospace , aircra...
This study considers welding of Ti-6Al-4V, which is widely used in the chemical, automotive, aerospa...
Preventing the formation of brittle intermetallic compounds and defects or porosity in the fusion zo...
AbstractIn this paper an experimental analysis on laser beam welding process of Ti6Al4V titanium all...
To obtain satisfactory welds in positional laser beam welding, it is necessary to know how process p...
Ti-6Al-4V sheets, 3.2-mm in thickness, were butt welded using a continuous wave 4 kW Nd:YAG laser we...
Lightweight structures for aerospace applications can be achieved by the use of materials with a hig...
Purpose: The primary purpose of the study was the metallurgical characterization of laser welds. The...
Ti-6Al-4V is an alloy that is increasingly used in aeronautics due to its high mechanical properties...
The article deals with laser beam welding of Ti-6Al-4V plates for aerospace applications. A number o...
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...
Owing to the high specific strength and excellent corrosion resistance, Ti-6Al-4V has been widely ap...
Dissimilar Ti–Al laser weldings are very interesting due to their difficulties in being processed be...
Laser welding will be an important welding process for different applications in aerospace , aircra...
This study considers welding of Ti-6Al-4V, which is widely used in the chemical, automotive, aerospa...
Preventing the formation of brittle intermetallic compounds and defects or porosity in the fusion zo...
AbstractIn this paper an experimental analysis on laser beam welding process of Ti6Al4V titanium all...