Some implants only have a temporary function and are therefore preferably made from a biodegradable material which is removed from the body by dissolution after several months or years. Zn and its alloys are suitable for this application, both from a biological and degradation rate point of view. However, little is known about Zn and Zn alloys in cellular (porous) form. In addition, one of the manufacturing processes which is most promising for the production of (orthopedic) implants with porous volumes, laser powder bed fusion or Direct Metal Printing (DMP), has not been used for Zn and its alloys yet. Therefore, the aim of this thesis was to develop the DMP process for the production of cellular Zn alloys, compare their mechanical propert...
The equal channel angular pressing (ECAP) process was used to develop a Zn-1Mg alloy with a tensile ...
Zn is promising candidate material for biodegradable implants due to its acceptable biocompatibility...
In the last decade, iron and magnesium, both pure and alloyed, have been extensively studied as pote...
In this work, the macrotexture of dense Zn produced by laser powder bed fusion (LPBF) was studied an...
Zinc (Zn) is a potential bioresorbable metal material (BMM) with a degradation rate lower than magne...
Purpose This work investigates the processability by selective laser melting of materials of potent...
As a new kind of biodegradable metal, Zn possesses promising features, i.e. suitable biodegradabilit...
Zinc (Zn) possesses great potential for application in biomedical implants owing to its acceptable l...
Zn based metals have exhibited promising applications for biodegradable implants. Only a handful of ...
Biodegradable materials avoid second surgeries and long-term associated risks of conventional inert ...
Recent studies have shown that Zinc (Zn) exhibits promising applications for biodegradable medical i...
In this work, three widely used commercial Zn alloys (ZA4-1, ZA4-3, ZA6-1) were purchased and prepar...
Apart from the industrial and automotive applications, Zn and Zn-based alloys are considered as a ne...
The prevalence of biomedical implants has grown substantially in modern healthcare, benefiting a sub...
Zinc is a non-ferrous metal with potential application in orthopaedic implant materials. However, it...
The equal channel angular pressing (ECAP) process was used to develop a Zn-1Mg alloy with a tensile ...
Zn is promising candidate material for biodegradable implants due to its acceptable biocompatibility...
In the last decade, iron and magnesium, both pure and alloyed, have been extensively studied as pote...
In this work, the macrotexture of dense Zn produced by laser powder bed fusion (LPBF) was studied an...
Zinc (Zn) is a potential bioresorbable metal material (BMM) with a degradation rate lower than magne...
Purpose This work investigates the processability by selective laser melting of materials of potent...
As a new kind of biodegradable metal, Zn possesses promising features, i.e. suitable biodegradabilit...
Zinc (Zn) possesses great potential for application in biomedical implants owing to its acceptable l...
Zn based metals have exhibited promising applications for biodegradable implants. Only a handful of ...
Biodegradable materials avoid second surgeries and long-term associated risks of conventional inert ...
Recent studies have shown that Zinc (Zn) exhibits promising applications for biodegradable medical i...
In this work, three widely used commercial Zn alloys (ZA4-1, ZA4-3, ZA6-1) were purchased and prepar...
Apart from the industrial and automotive applications, Zn and Zn-based alloys are considered as a ne...
The prevalence of biomedical implants has grown substantially in modern healthcare, benefiting a sub...
Zinc is a non-ferrous metal with potential application in orthopaedic implant materials. However, it...
The equal channel angular pressing (ECAP) process was used to develop a Zn-1Mg alloy with a tensile ...
Zn is promising candidate material for biodegradable implants due to its acceptable biocompatibility...
In the last decade, iron and magnesium, both pure and alloyed, have been extensively studied as pote...