Laser powder bed fusion (PBF-LB) can be potentially used for producing patient-specific biomedical devices based on micro struts such as cardiovascular stents. NiTi alloys are an appealing choice for their superelastic behaviour, while their processing with PBF-LB poses several challenges. The final component is expected to have the correct transition temperature and mechanical properties along with an acceptable surface finish. All of these properties require a complete manufacturing cycle from PBF-LB for the production of the geometrical form, to the heat treatment for the adjustment of the mechanical properties, and finally to the chemical etching for the reduction of surface roughness. Therefore this work studies a complete manufacturin...
To date, there is a general lack of customizability within the selection of endovascular devices for...
To date, there is a general lack of customizability within the selection of endovascular devices for...
To date, there is a general lack of customizability within the selection of endovascular devices for...
Laser powder bed fusion (PBF-LB) can be potentially used for producing patient-specific biomedical d...
Laser powder bed fusion (PBF-LB) can be potentially used for producing patient-specific biomedical d...
Additive manufacturing (AM) of customised vascular or peripheral stents is of great potential for su...
Nickel–titanium (NiTi) is a promising alloy for biomedical applications due to its unique combinatio...
Additive manufacturing (AM) of customised vascular or peripheral stents is of great potential for su...
Additive manufacturing (AM) of customised vascular or peripheral stents is of great potential for su...
This work investigates the processing of NiTi open-cell peripheral stents with variable diameter by ...
Additive manufacturing (AM) of customised vascular or peripheral stents is of great potential for su...
Additive manufacturing (AM) of customised vascular or peripheral stents is of great potential for su...
To date, there is a general lack of customizability within the selection of endovascular devices for...
To date, there is a general lack of customizability within the selection of endovascular devices for...
To date, there is a general lack of customizability within the selection of endovascular devices for...
To date, there is a general lack of customizability within the selection of endovascular devices for...
To date, there is a general lack of customizability within the selection of endovascular devices for...
To date, there is a general lack of customizability within the selection of endovascular devices for...
Laser powder bed fusion (PBF-LB) can be potentially used for producing patient-specific biomedical d...
Laser powder bed fusion (PBF-LB) can be potentially used for producing patient-specific biomedical d...
Additive manufacturing (AM) of customised vascular or peripheral stents is of great potential for su...
Nickel–titanium (NiTi) is a promising alloy for biomedical applications due to its unique combinatio...
Additive manufacturing (AM) of customised vascular or peripheral stents is of great potential for su...
Additive manufacturing (AM) of customised vascular or peripheral stents is of great potential for su...
This work investigates the processing of NiTi open-cell peripheral stents with variable diameter by ...
Additive manufacturing (AM) of customised vascular or peripheral stents is of great potential for su...
Additive manufacturing (AM) of customised vascular or peripheral stents is of great potential for su...
To date, there is a general lack of customizability within the selection of endovascular devices for...
To date, there is a general lack of customizability within the selection of endovascular devices for...
To date, there is a general lack of customizability within the selection of endovascular devices for...
To date, there is a general lack of customizability within the selection of endovascular devices for...
To date, there is a general lack of customizability within the selection of endovascular devices for...
To date, there is a general lack of customizability within the selection of endovascular devices for...