Zn based metals have exhibited promising applications for biodegradable implants. Only a handful of very recent reports were found on additive manufacturing of Zn metal by selective laser melting (SLM). This work provided a systematic study on densification, surface roughness and mechanical properties regarding SLM of Zn metal. Single track surface after laser melting was rugged and twisted with a large amount of attached particles due to severe Zn evaporation. For SLM produced solid parts, the relative density was more than 99.50%; the surface roughness Sa was 9.15–10.79 μm for as-melted status and 4.83 μm after sandblasting, both comparable to optimal results obtained by SLM of common metals. The microstructure was made up of fine columna...
Highly customisable implants with lattice structures can be achieved using selective laser melting (...
The aim of this paper is to assess the current status of processing biodegradable metals (BDM) via s...
Zn is promising candidate material for biodegradable implants due to its acceptable biocompatibility...
Purpose This work investigates the processability by selective laser melting of materials of potent...
Recent studies have shown that Zinc (Zn) exhibits promising applications for biodegradable medical i...
Zinc and its alloys constitute the new generation of biodegradable metallic materials for biomedical...
Zinc (Zn) is a potential bioresorbable metal material (BMM) with a degradation rate lower than magne...
In this work, the macrotexture of dense Zn produced by laser powder bed fusion (LPBF) was studied an...
Cardiovascular stents are biomedical devices, which restore normal blood flow in the case of coronar...
Some implants only have a temporary function and are therefore preferably made from a biodegradable ...
Highly customisable implants with lattice structures can be achieved using selective laser melting (...
The aim of this paper is to assess the current status of processing biodegradable metals (BDM) via s...
Zn is promising candidate material for biodegradable implants due to its acceptable biocompatibility...
Purpose This work investigates the processability by selective laser melting of materials of potent...
Recent studies have shown that Zinc (Zn) exhibits promising applications for biodegradable medical i...
Zinc and its alloys constitute the new generation of biodegradable metallic materials for biomedical...
Zinc (Zn) is a potential bioresorbable metal material (BMM) with a degradation rate lower than magne...
In this work, the macrotexture of dense Zn produced by laser powder bed fusion (LPBF) was studied an...
Cardiovascular stents are biomedical devices, which restore normal blood flow in the case of coronar...
Some implants only have a temporary function and are therefore preferably made from a biodegradable ...
Highly customisable implants with lattice structures can be achieved using selective laser melting (...
The aim of this paper is to assess the current status of processing biodegradable metals (BDM) via s...
Zn is promising candidate material for biodegradable implants due to its acceptable biocompatibility...