Using Titanium (Ti) foam as an implant material is a new approach for biomedical applications and it is important to understand the mechanical behaviors of this new foam material. In the present study, the bending of the Ti foam has been simulated and compared against recently published data [1]. FE Analysis has been performed by Abaqus software. Stiffness and Yield strength of foams between 50% (cortical bone) to 80% (cancellous bone) porosity range were considered. This study showed that crushable foam material model in Abaqus, which has developed primarily for Aluminum (Al) foam alloys, is also valid for Ti Foam before any crack or damage occurs in the sample
The development of titanium foams with a low elastic modulus has increased their scientific and tech...
Worldwide yearly 800.000-1.000.000 people receive a total artificial hip. 8-9% Of all patients requi...
Titanium foams produced via the space-holder method are used for spinal fusion devices since their c...
Understanding the mechanical behaviour of pure titanium (Ti) foam is crucial for the design and deve...
Under load-bearing conditions metal-based foam scaffolds are currently the preferred choice as bone/...
The results obtained from this work reveal that high porous titanium foams have fracture mechan...
Porous titanium (Ti) offers several key attributes as a biomedical material. Among the known charact...
Under load-bearing conditions metal-based foam scaffolds are currently the preferred choice as bone/...
Porous titanium (Ti) offers several key attributes as a biomedical material. Among the known charact...
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...
The generation of titanium foams is a promising strategy for modifying the mechanical properties of ...
A new process has been recently developed to produce biocompatible metallic foams using powder mixtu...
With superior mechanical and biological properties, titanium-based foams have potentially beneficial...
The generation of titanium foams is a promising strategy for modifying the mechanical properties of ...
The development of titanium foams with a low elastic modulus has increased their scientific and tech...
Worldwide yearly 800.000-1.000.000 people receive a total artificial hip. 8-9% Of all patients requi...
Titanium foams produced via the space-holder method are used for spinal fusion devices since their c...
Understanding the mechanical behaviour of pure titanium (Ti) foam is crucial for the design and deve...
Under load-bearing conditions metal-based foam scaffolds are currently the preferred choice as bone/...
The results obtained from this work reveal that high porous titanium foams have fracture mechan...
Porous titanium (Ti) offers several key attributes as a biomedical material. Among the known charact...
Under load-bearing conditions metal-based foam scaffolds are currently the preferred choice as bone/...
Porous titanium (Ti) offers several key attributes as a biomedical material. Among the known charact...
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...
The generation of titanium foams is a promising strategy for modifying the mechanical properties of ...
A new process has been recently developed to produce biocompatible metallic foams using powder mixtu...
With superior mechanical and biological properties, titanium-based foams have potentially beneficial...
The generation of titanium foams is a promising strategy for modifying the mechanical properties of ...
The development of titanium foams with a low elastic modulus has increased their scientific and tech...
Worldwide yearly 800.000-1.000.000 people receive a total artificial hip. 8-9% Of all patients requi...
Titanium foams produced via the space-holder method are used for spinal fusion devices since their c...