Additive manufacturing of functional metallic parts based on layer-by-layer melting and solidification suffers from the detrimental effects of high-temperature processing such as large residual stresses, poor mechanical properties, unwanted phase transformations, and part distortion. Here we utilize the kinetic energy of powder particles to form a solid-state bonding and overcome the challenges associated with the high temperature processing of metals. Specifically, we accelerated powders to supersonic impact velocities (~600 m/s) and exploited plastic deformation and softening due to high strain rate dynamic loading to 3D print Ti-6Al-4V powders at temperatures (800 °C, 900 °C) well below their melting point (1626 °C). By using processing ...
Additive manufacturing (AM) of metals, also known as metal 3D printing, typically leads to the forma...
Porous Ti-6Al-4V alloys are attractive candidates as implant materials due to their good biocompatib...
Submitted to School of Chemical and Metallurgical Engineering, Faculty of Engineering and the Built...
Additive manufacturing of functional metallic parts based on layer-by-layer melting and solidificati...
The recent breakthroughs of Additive Manufacturing (AM) have shed light on the ever more versatile t...
The osseointegration of metallic implants depends on an effective balance among designed porosity to...
Additive manufacturing, often known as three-dimensional (3D) printing, is a process in which a part...
Ti-6Al-4V components used extensively in aero engines are prone to damage. When a part is damaged, i...
This paper aims to break the current material-process-property tradeoffs in metal fused filament fab...
Additive manufacturing is a rapidly developing manufacturing technology of great potential for appli...
Ti-6Al-4V alloy is characterised by having excellent mechanical properties and corrosion resistance ...
Titanium and its alloys such as Ti6Al4V play a major role in the medical industry as bone implants. ...
Powder bed additive manufacturing of titanium components offers several advantages. The high freedom...
This paper aims to study the genesis of defects in titanium components made through two different ad...
Commercial spherical Ti powders for additive manufacturing applications are produced today by melt-a...
Additive manufacturing (AM) of metals, also known as metal 3D printing, typically leads to the forma...
Porous Ti-6Al-4V alloys are attractive candidates as implant materials due to their good biocompatib...
Submitted to School of Chemical and Metallurgical Engineering, Faculty of Engineering and the Built...
Additive manufacturing of functional metallic parts based on layer-by-layer melting and solidificati...
The recent breakthroughs of Additive Manufacturing (AM) have shed light on the ever more versatile t...
The osseointegration of metallic implants depends on an effective balance among designed porosity to...
Additive manufacturing, often known as three-dimensional (3D) printing, is a process in which a part...
Ti-6Al-4V components used extensively in aero engines are prone to damage. When a part is damaged, i...
This paper aims to break the current material-process-property tradeoffs in metal fused filament fab...
Additive manufacturing is a rapidly developing manufacturing technology of great potential for appli...
Ti-6Al-4V alloy is characterised by having excellent mechanical properties and corrosion resistance ...
Titanium and its alloys such as Ti6Al4V play a major role in the medical industry as bone implants. ...
Powder bed additive manufacturing of titanium components offers several advantages. The high freedom...
This paper aims to study the genesis of defects in titanium components made through two different ad...
Commercial spherical Ti powders for additive manufacturing applications are produced today by melt-a...
Additive manufacturing (AM) of metals, also known as metal 3D printing, typically leads to the forma...
Porous Ti-6Al-4V alloys are attractive candidates as implant materials due to their good biocompatib...
Submitted to School of Chemical and Metallurgical Engineering, Faculty of Engineering and the Built...