The current trend in development of new metallic materials for certain types of implants is turning away from permanent, biologically inert materials to the use of biodegradable materials. Fe–Mn alloys represent high perspective material for development of new generation of temporary and biodegradable implants. The aim of this work was to study mechanical and corrosion characteristics of powder samples containing 25, 30 and 35 wt % of Mn which are fabricated by pressing, sintering, and additional spark plasma sintering. The influence of preparation method (pressing and sintering) to microstructure, phased composition and corrosion behavior of prepared alloys was studied
The study is focussing towards Metal Injection Moulding (MIM) of Mg-alloys for biomedical implant ap...
Increasing mechanical properties requirements for structural parts direct modern powder metallurgy t...
Metal Injection Moulding (MIM) is known as a viable process for series production of complex parts f...
Powder sintering at 1200 °C for 180 min was used to produce Fe-Mn based alloys with tensile properti...
Powder sintering at 1200 °C for 180 min was used to produce Fe–Mn based alloys with tensi...
Iron samples and Fe-Mn alloys with Mn content of 25 wt.% and 30 wt.% were prepared by blending, comp...
In this work, the role that manganese plays in determining the structure and performance of sintered...
This study examines the sintering behavior and properties of Fe-0.8Mn-0.5C manganese powder metallur...
In this work, the role that manganese plays in determining the structure and performance of sintered...
At present, FeMn-based degradable alloys prepared by direct sintering generally face the problems of...
Successfully designing biodegradable metallic orthopedic implants that support bone remodeling after...
Porous degradable metal is a promising material for hard-tissue scaffold application. It offers bett...
Manganese has a substantial potential for the production of precision structural parts with high sta...
Among steel-making techniques Powder Metallurgy (PM) concept utilizes unique production cycle, consi...
Alloying of Mg with rare-earth (RE) elements proved to be beneficial for their in-vitro and in-vivo ...
The study is focussing towards Metal Injection Moulding (MIM) of Mg-alloys for biomedical implant ap...
Increasing mechanical properties requirements for structural parts direct modern powder metallurgy t...
Metal Injection Moulding (MIM) is known as a viable process for series production of complex parts f...
Powder sintering at 1200 °C for 180 min was used to produce Fe-Mn based alloys with tensile properti...
Powder sintering at 1200 °C for 180 min was used to produce Fe–Mn based alloys with tensi...
Iron samples and Fe-Mn alloys with Mn content of 25 wt.% and 30 wt.% were prepared by blending, comp...
In this work, the role that manganese plays in determining the structure and performance of sintered...
This study examines the sintering behavior and properties of Fe-0.8Mn-0.5C manganese powder metallur...
In this work, the role that manganese plays in determining the structure and performance of sintered...
At present, FeMn-based degradable alloys prepared by direct sintering generally face the problems of...
Successfully designing biodegradable metallic orthopedic implants that support bone remodeling after...
Porous degradable metal is a promising material for hard-tissue scaffold application. It offers bett...
Manganese has a substantial potential for the production of precision structural parts with high sta...
Among steel-making techniques Powder Metallurgy (PM) concept utilizes unique production cycle, consi...
Alloying of Mg with rare-earth (RE) elements proved to be beneficial for their in-vitro and in-vivo ...
The study is focussing towards Metal Injection Moulding (MIM) of Mg-alloys for biomedical implant ap...
Increasing mechanical properties requirements for structural parts direct modern powder metallurgy t...
Metal Injection Moulding (MIM) is known as a viable process for series production of complex parts f...