Porosity defects remain a challenge to the structural integrity of additive manufactured materials, particularly for parts under fatigue loading applications. Although the wire + arc additive manufactured Ti-6Al-4 V builds are typically fully dense, occurrences of isolated pores may not be completely avoided due to feedstock contamination. This study used contaminated wires to build the gauge section of fatigue specimens to purposely introduce spherical gas pores in the size range of 120–250 micrometres. Changes in the defect morphology were monitored via interrupted fatigue testing with periodic X-ray computed tomography (CT) scanning. Prior to specimen failure, the near surface pores grew by approximately a factor of 2 and tortuous fatigu...
International audienceWire and Arc Additive Manufacturing (WAAM) is a direct-energy deposition techn...
CITATION: Malefane, L. B., et al. 2018. Tensile and high cycle fatigue properties of annealed TI6AL4...
This work is focused on the influence of porosity when dealing with the fatigue behaviour of the TA6...
Porosity defects remain a challenge to the structural integrity of additive manufactured materials, ...
This study was aimed at investigating the effect of internal porosity on the fatigue strength of wir...
Without post-manufacture HIPing the fatigue life of electron beam melting (EBM) additively manufactu...
Wire and arc additively manufactured (WAAM) parts and structures often present internal defects, suc...
Additive manufacturing (AM) has enabled the fabrication of complex geometries directly from the desi...
Titanium alloys such as Ti-6Al-4V built by most of the additive manufacturing processes are known to...
This work is focused on the influence of defects on scatter and statistical size effect of Ti-6Al-4V...
Additive Manufacturing (AM) has gained a lot of interest due to the freedom to produce complex metal...
Titanium-alloy weldments have been extensively used in engineering structures, and accurate estimati...
As additive manufacturing becomes an increasingly popular method for advanced manufacturing of comp...
In this work, the fatigue behaviour of Ti6Al4V manufactured using electron beam melting, its depende...
In Ti-6Al-4V, fatigue cracks can nucleate internally instead of at the surface. Internal or subsurfa...
International audienceWire and Arc Additive Manufacturing (WAAM) is a direct-energy deposition techn...
CITATION: Malefane, L. B., et al. 2018. Tensile and high cycle fatigue properties of annealed TI6AL4...
This work is focused on the influence of porosity when dealing with the fatigue behaviour of the TA6...
Porosity defects remain a challenge to the structural integrity of additive manufactured materials, ...
This study was aimed at investigating the effect of internal porosity on the fatigue strength of wir...
Without post-manufacture HIPing the fatigue life of electron beam melting (EBM) additively manufactu...
Wire and arc additively manufactured (WAAM) parts and structures often present internal defects, suc...
Additive manufacturing (AM) has enabled the fabrication of complex geometries directly from the desi...
Titanium alloys such as Ti-6Al-4V built by most of the additive manufacturing processes are known to...
This work is focused on the influence of defects on scatter and statistical size effect of Ti-6Al-4V...
Additive Manufacturing (AM) has gained a lot of interest due to the freedom to produce complex metal...
Titanium-alloy weldments have been extensively used in engineering structures, and accurate estimati...
As additive manufacturing becomes an increasingly popular method for advanced manufacturing of comp...
In this work, the fatigue behaviour of Ti6Al4V manufactured using electron beam melting, its depende...
In Ti-6Al-4V, fatigue cracks can nucleate internally instead of at the surface. Internal or subsurfa...
International audienceWire and Arc Additive Manufacturing (WAAM) is a direct-energy deposition techn...
CITATION: Malefane, L. B., et al. 2018. Tensile and high cycle fatigue properties of annealed TI6AL4...
This work is focused on the influence of porosity when dealing with the fatigue behaviour of the TA6...