Titanium foams are presently used in various load bearing orthopedic applications. Such foams are characterized by an open network of porosity with high surface area. This paper presents the structure, microstructure, and properties of titanium foams produced with a powder metallurgy process. Fully porous CpTi and Ti6Al4V cylinders and CpTi foam coating on CpTi and Ti6Al4V substrates were produced and characterized. The microstructure of the foam cell walls is representative of annealed CpTi and Ti6Al4V. Alloying elements and oxygen in solution increase the mechanical strength of the foams but lower their ductility. Ductility affects the fatigue life of the material. When CpTi foam is bonded to Ti6Al4V substrates, migration of alloying elem...
Titanium foams fabricated by a new powder metallurgical process have bimodal pore distribution archi...
Porous Ti-6Al-4V alloys are widely used in the biomedical applications for hard tissue implantation ...
The development of titanium foams with a low elastic modulus has increased their scientific and tech...
A new process has been recently developed to produce biocompatible metallic foams using powder mixtu...
Understanding the mechanical behaviour of pure titanium (Ti) foam is crucial for the design and deve...
Pure titanium and some of its alloys are currently considered as the most attractive metallic materi...
Titanium has excellent mechanical properties, a low density and bio-compatibility features. Titanium...
Porous metals have been used in various orthopedic applications as coating to promote implant fixati...
Porous titanium (Ti) offers several key attributes as a biomedical material. Among the known charact...
Porous titanium (Ti) offers several key attributes as a biomedical material. Among the known charact...
Ti-6Al-4V foams, biomedical candidate materials, were synthesized by powder metallurgical space hold...
Metals are the oldest of biomedical implant materials and metallic alloys remain the material of cho...
In the study, both experimental work and numerical modeling are performed to investigate the pore si...
The generation of titanium foams is a promising strategy for modifying the mechanical properties of ...
The generation of titanium foams is a promising strategy for modifying the mechanical properties of ...
Titanium foams fabricated by a new powder metallurgical process have bimodal pore distribution archi...
Porous Ti-6Al-4V alloys are widely used in the biomedical applications for hard tissue implantation ...
The development of titanium foams with a low elastic modulus has increased their scientific and tech...
A new process has been recently developed to produce biocompatible metallic foams using powder mixtu...
Understanding the mechanical behaviour of pure titanium (Ti) foam is crucial for the design and deve...
Pure titanium and some of its alloys are currently considered as the most attractive metallic materi...
Titanium has excellent mechanical properties, a low density and bio-compatibility features. Titanium...
Porous metals have been used in various orthopedic applications as coating to promote implant fixati...
Porous titanium (Ti) offers several key attributes as a biomedical material. Among the known charact...
Porous titanium (Ti) offers several key attributes as a biomedical material. Among the known charact...
Ti-6Al-4V foams, biomedical candidate materials, were synthesized by powder metallurgical space hold...
Metals are the oldest of biomedical implant materials and metallic alloys remain the material of cho...
In the study, both experimental work and numerical modeling are performed to investigate the pore si...
The generation of titanium foams is a promising strategy for modifying the mechanical properties of ...
The generation of titanium foams is a promising strategy for modifying the mechanical properties of ...
Titanium foams fabricated by a new powder metallurgical process have bimodal pore distribution archi...
Porous Ti-6Al-4V alloys are widely used in the biomedical applications for hard tissue implantation ...
The development of titanium foams with a low elastic modulus has increased their scientific and tech...