Among degradable metal cardiac stent materials, zinc has great biocompatibility and corrosion properties, which make it become the most potential stent material. However, the mechanical properties of zinc cannot meet the performance requirements of stent material which severely limit its application. In this paper, Zn-xCu (x = 1, 2 and 3 wt.%) alloys were prepared, and their mechanical properties, corrosion properties and biocompatibility were studied. Tensile testing showed the tensile strength and hardness of Zn-xCu alloys both increased with the addition of copper, but the elongation decreased at first and then upturned. Since the formation of galvanic cell, the corrosion rates of Zn-xCu alloys increased. The main corrosion mechanism of ...
Cardiovascular stents are biomedical devices, which restore normal blood flow in the case of coronar...
Apart from the industrial and automotive applications, Zn and Zn-based alloys are considered as a ne...
Mechanical properties of Zn-3Ag alloy in comparison to bioresorbable (WE43, PLLA) and non-resorbable...
In the recent decades, zinc (Zn) and its alloys have been drawing attention as promising candidates ...
Zinc (Zn) alloys have been paid increasing attention in the field of biodegradable implantable mater...
The search for a degradable metal simultaneously showing mechanical properties equal or higher to th...
Zinc shows great promise as a bioabsorbable metal; however, the low tensile strength of pure zinc li...
Zn-based materials have attracted increasing attention in the biodegradable materials field due to t...
In this work, three widely used commercial Zn alloys (ZA4-1, ZA4-3, ZA6-1) were purchased and prepar...
The search for biodegradable metals with mechanical properties equal or higher to those of currently...
Biodegradable zinc (Zn) and its alloys have great potential to be used for orthopedic applications d...
It is still an open challenge to find a biodegradable metallic material exhibiting sufficient mechan...
The metallurgical engineering of bioresorbable zinc (Zn)-based medical alloys would greatly benefit ...
Zinc (Zn) and its alloys have been proposed as biodegradable implant materials due to their unique c...
Coronary stents made of zinc (Zn)-0.8 copper (Cu) (in wt%) alloy were developed as biodegradable met...
Cardiovascular stents are biomedical devices, which restore normal blood flow in the case of coronar...
Apart from the industrial and automotive applications, Zn and Zn-based alloys are considered as a ne...
Mechanical properties of Zn-3Ag alloy in comparison to bioresorbable (WE43, PLLA) and non-resorbable...
In the recent decades, zinc (Zn) and its alloys have been drawing attention as promising candidates ...
Zinc (Zn) alloys have been paid increasing attention in the field of biodegradable implantable mater...
The search for a degradable metal simultaneously showing mechanical properties equal or higher to th...
Zinc shows great promise as a bioabsorbable metal; however, the low tensile strength of pure zinc li...
Zn-based materials have attracted increasing attention in the biodegradable materials field due to t...
In this work, three widely used commercial Zn alloys (ZA4-1, ZA4-3, ZA6-1) were purchased and prepar...
The search for biodegradable metals with mechanical properties equal or higher to those of currently...
Biodegradable zinc (Zn) and its alloys have great potential to be used for orthopedic applications d...
It is still an open challenge to find a biodegradable metallic material exhibiting sufficient mechan...
The metallurgical engineering of bioresorbable zinc (Zn)-based medical alloys would greatly benefit ...
Zinc (Zn) and its alloys have been proposed as biodegradable implant materials due to their unique c...
Coronary stents made of zinc (Zn)-0.8 copper (Cu) (in wt%) alloy were developed as biodegradable met...
Cardiovascular stents are biomedical devices, which restore normal blood flow in the case of coronar...
Apart from the industrial and automotive applications, Zn and Zn-based alloys are considered as a ne...
Mechanical properties of Zn-3Ag alloy in comparison to bioresorbable (WE43, PLLA) and non-resorbable...