Additive manufacturing (AM) of metals is one of the foremost methods used for making medical implants and components for aviation. However, the fatigue strength of AM metals is weaker than that of the bulk equivalent. Mechanically treating the surface, such as by shot peening, can improve the fatigue strength, and novel peening methods without shot have also been proposed. In this paper, in order to demonstrate the improvements made in AM metals by various peening methods, specimens made of titanium alloy Ti6Al4V manufactured by electron beam melting (EBM) were treated by shot peening, laser peening and cavitation peening, then assessed by a plate bending fatigue test. In the case of shot peening, the shots were accelerated by a water jet t...
Titanium alloys do not exhibit good seizure toughness. In general, a surface treatment must be appli...
The fatigue and fracture behaviour of two titanium alloys, the near-alpha IMI-685 and alpha-beta IMI...
Metal additive manufacturing is a major concern for advanced manufacturing industries thanks to its ...
Additive manufactured (AM) metals are attractive materials for medical implants, as their geometries...
Shot peening (SP) is a mechanical surface treatment commonly performed to improve the fatigue behavi...
Laser peening is an innovative surface treatment technique, and can significantly improve the mechan...
A major challenge for additively manufactured structural parts is the low fatigue strength connected...
Article number 106536Additive manufacturing (AM) of metallic parts is a relatively new manufacturing...
Additive manufacture (AM) appears to be the most suitable technology to produce sophisticated, high ...
Laser peening is a good candidate for the surface treatment industry because of its localized operat...
Different alloys can be used for Additive Manufacturing (AM) with good structural strength. Among th...
Additive Manufacturing (AM) for metals includes is a group of production methodst hat use a layer-by...
Shot peening (SP) is a mechanical surface treatment commonly performed to improve the fatigue behavi...
This master thesis investigates the effect of surface morphology of Selectively Laser Melted Ti-6Al-...
A major challenge for additively manufactured structural parts is the low fatigue strength connected...
Titanium alloys do not exhibit good seizure toughness. In general, a surface treatment must be appli...
The fatigue and fracture behaviour of two titanium alloys, the near-alpha IMI-685 and alpha-beta IMI...
Metal additive manufacturing is a major concern for advanced manufacturing industries thanks to its ...
Additive manufactured (AM) metals are attractive materials for medical implants, as their geometries...
Shot peening (SP) is a mechanical surface treatment commonly performed to improve the fatigue behavi...
Laser peening is an innovative surface treatment technique, and can significantly improve the mechan...
A major challenge for additively manufactured structural parts is the low fatigue strength connected...
Article number 106536Additive manufacturing (AM) of metallic parts is a relatively new manufacturing...
Additive manufacture (AM) appears to be the most suitable technology to produce sophisticated, high ...
Laser peening is a good candidate for the surface treatment industry because of its localized operat...
Different alloys can be used for Additive Manufacturing (AM) with good structural strength. Among th...
Additive Manufacturing (AM) for metals includes is a group of production methodst hat use a layer-by...
Shot peening (SP) is a mechanical surface treatment commonly performed to improve the fatigue behavi...
This master thesis investigates the effect of surface morphology of Selectively Laser Melted Ti-6Al-...
A major challenge for additively manufactured structural parts is the low fatigue strength connected...
Titanium alloys do not exhibit good seizure toughness. In general, a surface treatment must be appli...
The fatigue and fracture behaviour of two titanium alloys, the near-alpha IMI-685 and alpha-beta IMI...
Metal additive manufacturing is a major concern for advanced manufacturing industries thanks to its ...