Tensile properties and microhardness of electron beam welded thick damage-tolerant Ti-6Al-4V joints with the weld cross-section of parallel shaped and taper shaped configurations were examined. Moreover, the mechanical heterogeneity along the weld depth was studied. The results indicate that for both the shaped joints, the weld metal exhibits increased strength and microhardness, while decreased ductility and toughness as compared with the base metal. The mechanical properties of the weld metal are heterogeneous along the weld depth. With the increase of weld depth, the strength and microhardness increase. The weld middle position has smaller mechanical heterogeneity than the weld top and weld root. Moreover, the heterogeneity of parallel s...
Several new commercial advanced high- strength steels exhibit high strength and enhanced form- abili...
Titanium and aluminium alloys are among the most used construct materials due to their physical and ...
AbstractWith the development of the manufacturing technology, electron beam welding (EBW) is capable...
Electron beam welding (EBW) was applied to 50. mm thick damage-tolerant Ti-6Al-4V (TC4-DT) alloy, an...
Fracture toughness of a damage tolerant Ti6Al4V (TC4-DT) alloy and its electron beam welded joint wa...
The paper shows the results of metallographic examination and mechanical properties of electron beam...
Titanium is considered one of the best engineering materials for industrial applications with the di...
Commercially pure titanium Ti Grade 2, 2 mm in thickness, was welded to 2 mm thick nickel alloy 201 ...
Dissimilar metal joining between titanium and kovar alloys was conducted using electron beam welding...
Titanium and its alloys have excellent combination of properties, such as low density, high specific...
In this study, different groove geometries are designed for butt joining of titanium/steel bimetalli...
Electron beam welding of a titanium alloy (Ti-6Al-4V) and a kovar alloy (Fe-29Ni-17Co) was performed...
Similar and dissimilar butt joint welds comprising combinations of commercially pure grade 4 titaniu...
In this paper, the roles of the welding process on the heterogeneous microstructure and mechanical p...
This research investigates the relationship between the microstructure and mechanical properties of ...
Several new commercial advanced high- strength steels exhibit high strength and enhanced form- abili...
Titanium and aluminium alloys are among the most used construct materials due to their physical and ...
AbstractWith the development of the manufacturing technology, electron beam welding (EBW) is capable...
Electron beam welding (EBW) was applied to 50. mm thick damage-tolerant Ti-6Al-4V (TC4-DT) alloy, an...
Fracture toughness of a damage tolerant Ti6Al4V (TC4-DT) alloy and its electron beam welded joint wa...
The paper shows the results of metallographic examination and mechanical properties of electron beam...
Titanium is considered one of the best engineering materials for industrial applications with the di...
Commercially pure titanium Ti Grade 2, 2 mm in thickness, was welded to 2 mm thick nickel alloy 201 ...
Dissimilar metal joining between titanium and kovar alloys was conducted using electron beam welding...
Titanium and its alloys have excellent combination of properties, such as low density, high specific...
In this study, different groove geometries are designed for butt joining of titanium/steel bimetalli...
Electron beam welding of a titanium alloy (Ti-6Al-4V) and a kovar alloy (Fe-29Ni-17Co) was performed...
Similar and dissimilar butt joint welds comprising combinations of commercially pure grade 4 titaniu...
In this paper, the roles of the welding process on the heterogeneous microstructure and mechanical p...
This research investigates the relationship between the microstructure and mechanical properties of ...
Several new commercial advanced high- strength steels exhibit high strength and enhanced form- abili...
Titanium and aluminium alloys are among the most used construct materials due to their physical and ...
AbstractWith the development of the manufacturing technology, electron beam welding (EBW) is capable...