Fatigue cracks in titanium alloys are often found to initiate at faceted alpha grains. In the very high cycle fatigue regime, crack initiation tends to shift from the surface towards the interior of the material, and more initiation facets can be found on the fracture surface. In this study, fatigue tests were performed on drawn and heat-treated Ti-6Al-4V wires. Only a few samples fractured due to interior initiation. The facets at the initiation sites of these samples were not flat, but had markings on the nano-scale, and were highly inclined. A possible explanation for these aspects is the crystallographic texture of the wire, and a reflection is made on the suggested mechanisms of facet formation.peerreview_statement: The publishing and ...
Very high cycle fatigue of an additively manufactured Ti-6Al-4V is studied at R =-1, 0.1 and 0.2. Th...
Titanium alloys are often used in aerospace applications in which they are subjected to cyclic loadi...
By using scanning electron microscope equipped with EDS and 3D analyses, microstructure and crack in...
Fatigue cracks in titanium alloys are often found to initiate at faceted alpha grains. In the very h...
In the very high cycle fatigue regime, the location of crack initiation in titanium alloys is known ...
In Ti-6Al-4V, fatigue cracks can nucleate internally instead of at the surface. Internal or subsurfa...
AbstractIn the very high cycle fatigue regime, the location of crack initiation in titanium alloys i...
In the very high cycle fatigue regime, internal crack initiation can occur in Ti-6Al-4V because of t...
Dwell sensitivity in titanium alloys is generally attributed to the phenomenon of load shedding, whi...
Traditionally, equiaxed alpha grains rather than lamellar microstructure (LM) domains in titanium al...
In order to clarify how the internal crack initiation site distributes according to microstructure i...
This paper is focused on fatigue crack initiation and early growth in two-phase titanium alloy VT3-1...
The present article reports an investigation of the mechanism of surface crack initiation of a dwell...
For titanium alloys, crack initiation as a result of plastic strain accumulation has been shown to g...
Fatigue crack initiation in Ti-6Al-4V has been investigated in high cycle fatigue (HCF) and low cycl...
Very high cycle fatigue of an additively manufactured Ti-6Al-4V is studied at R =-1, 0.1 and 0.2. Th...
Titanium alloys are often used in aerospace applications in which they are subjected to cyclic loadi...
By using scanning electron microscope equipped with EDS and 3D analyses, microstructure and crack in...
Fatigue cracks in titanium alloys are often found to initiate at faceted alpha grains. In the very h...
In the very high cycle fatigue regime, the location of crack initiation in titanium alloys is known ...
In Ti-6Al-4V, fatigue cracks can nucleate internally instead of at the surface. Internal or subsurfa...
AbstractIn the very high cycle fatigue regime, the location of crack initiation in titanium alloys i...
In the very high cycle fatigue regime, internal crack initiation can occur in Ti-6Al-4V because of t...
Dwell sensitivity in titanium alloys is generally attributed to the phenomenon of load shedding, whi...
Traditionally, equiaxed alpha grains rather than lamellar microstructure (LM) domains in titanium al...
In order to clarify how the internal crack initiation site distributes according to microstructure i...
This paper is focused on fatigue crack initiation and early growth in two-phase titanium alloy VT3-1...
The present article reports an investigation of the mechanism of surface crack initiation of a dwell...
For titanium alloys, crack initiation as a result of plastic strain accumulation has been shown to g...
Fatigue crack initiation in Ti-6Al-4V has been investigated in high cycle fatigue (HCF) and low cycl...
Very high cycle fatigue of an additively manufactured Ti-6Al-4V is studied at R =-1, 0.1 and 0.2. Th...
Titanium alloys are often used in aerospace applications in which they are subjected to cyclic loadi...
By using scanning electron microscope equipped with EDS and 3D analyses, microstructure and crack in...