Additive manufacturing of Nitinol is a promising field, as it can circumvent the challenges associated with its conventional production processes and unlock unique advantages. However, the accompanying surface features such as powder adhesions, spatters, ballings, or oxide discolorations are undesirable in engineering applications and therefore must be removed. Plasma electrolytic polishing (PeP) might prove to be a suitable finishing process for this purpose, but the effects of post-processing on the mechanical and functional material properties of additively manufactured Nitinol are still largely unresearched. This study seeks to address this issue. The changes on and in the part caused by PeP with processing times between 2 and 20 min ar...
Nickel-titanium shape memory alloys (SMAs) have started becoming popular owing to their unique abili...
Additive manufacturing (AM) of customised vascular or peripheral stents is of great potential for su...
Additive manufacturing (AM) of metallic parts is gaining momentum in production industries. In view ...
A novel, environmentally friendly, fast, and flexible polishing process for Nitinol parts is present...
A novel, environmentally friendly, fast, and flexible polishing process for Nitinol parts is present...
In this study, for the first time, the application of plasma electrolytic polishing (PEP) of porous ...
After reporting on the ability of micro-EDM to significantly alter the transformation behaviour of N...
Most nitinol medical applications are hinged on its superelasticity and shape memory—two unique prop...
Nitinol (nickel-titanium or Ni-Ti) is the most utilized shape memory alloy due to its good superelas...
The shape-memory Nitinol as a nickel-titanium alloy is widely used in actuator and medical applicati...
The inherent issue of additively manufactured metallic parts is in their high surface roughness whic...
Nitinol, a group of nearly equiatomic shape memory and superelastic NiTi alloys, is being extensivel...
Additive manufacturing (AM) has gained prominence in the field of manufacturing and is becoming a st...
Nitinol is well known for its unique shape-memory property and super-elastic effect along with its e...
Additive manufacturing (AM) of Nitinol could enable realizing smart 3D metallic structures that comb...
Nickel-titanium shape memory alloys (SMAs) have started becoming popular owing to their unique abili...
Additive manufacturing (AM) of customised vascular or peripheral stents is of great potential for su...
Additive manufacturing (AM) of metallic parts is gaining momentum in production industries. In view ...
A novel, environmentally friendly, fast, and flexible polishing process for Nitinol parts is present...
A novel, environmentally friendly, fast, and flexible polishing process for Nitinol parts is present...
In this study, for the first time, the application of plasma electrolytic polishing (PEP) of porous ...
After reporting on the ability of micro-EDM to significantly alter the transformation behaviour of N...
Most nitinol medical applications are hinged on its superelasticity and shape memory—two unique prop...
Nitinol (nickel-titanium or Ni-Ti) is the most utilized shape memory alloy due to its good superelas...
The shape-memory Nitinol as a nickel-titanium alloy is widely used in actuator and medical applicati...
The inherent issue of additively manufactured metallic parts is in their high surface roughness whic...
Nitinol, a group of nearly equiatomic shape memory and superelastic NiTi alloys, is being extensivel...
Additive manufacturing (AM) has gained prominence in the field of manufacturing and is becoming a st...
Nitinol is well known for its unique shape-memory property and super-elastic effect along with its e...
Additive manufacturing (AM) of Nitinol could enable realizing smart 3D metallic structures that comb...
Nickel-titanium shape memory alloys (SMAs) have started becoming popular owing to their unique abili...
Additive manufacturing (AM) of customised vascular or peripheral stents is of great potential for su...
Additive manufacturing (AM) of metallic parts is gaining momentum in production industries. In view ...