Timely repair and replacement of military components without degrading material properties offers tremendous opportunities for cost and schedule savings on a number of military platforms. Effective field-based additive manufacturing repair approaches have proven difficult to develop, as conventional additive metal deposition technologies typically include a molten phase transformation and controlled inert deposition environments. The molten stage of laser and electron beam based additive processes unfortunately results in large dimensional and microstructural changes to the component being repaired or re-fabricated. As a result, high residual stresses and unpredictable ductility profiles in the repair area, or the re-fabricated part, make t...
This study investigated the effects of the hot isostatic pressing process on the crack healing, micr...
Ultrasonic Consolidation (UC) is a manufacturing technique based on the ultrasonic metal welding of ...
Repairing damaged products made of nickel-based superalloys is an urgent task because replacing them...
Timely repair and replacement of military components without degrading material properties offers tr...
This research project investigates the potential use of ultrasonic welding as a tool to repair impac...
Laser material deposition based restoration of high-value components can be a revolutionary technolo...
Additive manufacturing (AM) for fabricating 3D metallic parts has recently received considerable att...
Ultrasonic Consolidation (UC) is a solid state additive manufacturing process which fabricates three...
In the trucks manufacturing industry, railway industry, metallurgy industry, petrochemical and chem...
The urge for more sustainable and cost-efficient repair methods for damaged parts is growing every d...
The nuclear and offshore wind industries are of great interest to meet the current challenges of pro...
International audienceLaser additive manufacturing is a recent technology that turns a CAD modelled ...
Ultrasonic consolidation (UC) is a process whereby metal foils can be metallurgically bonded at or n...
Maintenance of Australian Defence Force aircraft fleets involves either the repair or replacement of...
As a rapidly evolving advanced digital manufacturing technology, additive manufacturing (AM) has its...
This study investigated the effects of the hot isostatic pressing process on the crack healing, micr...
Ultrasonic Consolidation (UC) is a manufacturing technique based on the ultrasonic metal welding of ...
Repairing damaged products made of nickel-based superalloys is an urgent task because replacing them...
Timely repair and replacement of military components without degrading material properties offers tr...
This research project investigates the potential use of ultrasonic welding as a tool to repair impac...
Laser material deposition based restoration of high-value components can be a revolutionary technolo...
Additive manufacturing (AM) for fabricating 3D metallic parts has recently received considerable att...
Ultrasonic Consolidation (UC) is a solid state additive manufacturing process which fabricates three...
In the trucks manufacturing industry, railway industry, metallurgy industry, petrochemical and chem...
The urge for more sustainable and cost-efficient repair methods for damaged parts is growing every d...
The nuclear and offshore wind industries are of great interest to meet the current challenges of pro...
International audienceLaser additive manufacturing is a recent technology that turns a CAD modelled ...
Ultrasonic consolidation (UC) is a process whereby metal foils can be metallurgically bonded at or n...
Maintenance of Australian Defence Force aircraft fleets involves either the repair or replacement of...
As a rapidly evolving advanced digital manufacturing technology, additive manufacturing (AM) has its...
This study investigated the effects of the hot isostatic pressing process on the crack healing, micr...
Ultrasonic Consolidation (UC) is a manufacturing technique based on the ultrasonic metal welding of ...
Repairing damaged products made of nickel-based superalloys is an urgent task because replacing them...