In this work, near fully dense NiTi components have been fabricated using a 55.2Ni-Ti (wt.%) powder through selective laser beam melting. The effect of the manufacturing process on mechanical and functional properties of the selected NiTi alloy has been systematically investigated by tuning the hatching distance, h, and the scanning speed, v, in order to define a set of 12 NiTi families. The as-built NiTi parts present phase transformation temperatures higher than those of the feedstock, ascribed to the depletion of Ni during the process. Pseudoelasticity and shape memory responses have been evaluated through uniaxial compression and bending measurements, respectively. Both quasi-static and dynamic analyses have been considered. It is shown...
Ni47Ti44Nb9 alloys were successfully fabricated by laser powder bed fusion (LPBF) technique with dif...
Material and mechanical properties of NiTi shape memory alloys strongly depend on the fabrication pr...
NiTi is one the metal alloys exhibiting shape memory and superelasticity which makes it suitable for...
In this work, near fully dense NiTi components have been fabricated using a 55.2Ni-Ti (wt.%) powder ...
In this study, an optimal selective laser melting (SLM) process for manufacturing dense NiTi alloy w...
Nickel–titanium (NiTi) is a promising alloy for biomedical applications due to its unique combinatio...
NiTiHf-based alloys have emerged as potential materials for applications requiring high transformati...
The damping properties of NiTi elements produced through selective laser melting are investigated by...
Due to unique functional and mechanical properties, NiTi shape memory alloys are one of the most pro...
[eng] Due to unique functional and mechanical properties, NiTi shape memory alloys are one of the mo...
NiTi dominates the market of shape memory materials due to its optimal combination of mechanical, fu...
The complexity in conventionally manufacturing NiTi has led to the additive manufacturing of NiTi wi...
NiTi alloys produced by different powder metallurgical (PM) methods are investigated concerning tran...
The use of elemental metallic powders and in situ alloying in additive manufacturing (AM) is of indu...
Superelastic metallic materials possessing large recoverable strains are widely used in automotive, ...
Ni47Ti44Nb9 alloys were successfully fabricated by laser powder bed fusion (LPBF) technique with dif...
Material and mechanical properties of NiTi shape memory alloys strongly depend on the fabrication pr...
NiTi is one the metal alloys exhibiting shape memory and superelasticity which makes it suitable for...
In this work, near fully dense NiTi components have been fabricated using a 55.2Ni-Ti (wt.%) powder ...
In this study, an optimal selective laser melting (SLM) process for manufacturing dense NiTi alloy w...
Nickel–titanium (NiTi) is a promising alloy for biomedical applications due to its unique combinatio...
NiTiHf-based alloys have emerged as potential materials for applications requiring high transformati...
The damping properties of NiTi elements produced through selective laser melting are investigated by...
Due to unique functional and mechanical properties, NiTi shape memory alloys are one of the most pro...
[eng] Due to unique functional and mechanical properties, NiTi shape memory alloys are one of the mo...
NiTi dominates the market of shape memory materials due to its optimal combination of mechanical, fu...
The complexity in conventionally manufacturing NiTi has led to the additive manufacturing of NiTi wi...
NiTi alloys produced by different powder metallurgical (PM) methods are investigated concerning tran...
The use of elemental metallic powders and in situ alloying in additive manufacturing (AM) is of indu...
Superelastic metallic materials possessing large recoverable strains are widely used in automotive, ...
Ni47Ti44Nb9 alloys were successfully fabricated by laser powder bed fusion (LPBF) technique with dif...
Material and mechanical properties of NiTi shape memory alloys strongly depend on the fabrication pr...
NiTi is one the metal alloys exhibiting shape memory and superelasticity which makes it suitable for...