Titanium foams of relative density in the range 0.35-0.50 are tested in quasi-static compression, tension and shear. The response is ductile in compression but brittle, and weaker, in shear and tension. Virtual foam microstructures are generated by an algorithm based on Voronoi tessellation of three-dimensional space, capable of reproducing the measured size distribution of the pores in the foam. Finite Element (FE) simulations are conducted to explore the mechanical response of the material, by analysing the elasto-plastic response of a statistical volume element (SVE). The simulations correctly predict the ductile compressive response and its dependence on relative density
Cellular materials have a bulk matrix with a larger number of voids named also cells. Metallic foams...
Under load-bearing conditions metal-based foam scaffolds are currently the preferred choice as bone/...
Under load-bearing conditions metal-based foam scaffolds are currently the preferred choice as bone/...
Titanium foams of relative density in the range 0.35-0.50 are tested in quasi-static compression, te...
Two algorithms are developed to generate virtual microstructures of Titanium foams of medium relativ...
Titanium foams of relative density ranging from 0.3 to 0.9 were produced by titanium powder sinterin...
In the study, both experimental work and numerical modeling are performed to investigate the pore si...
Sintered titanium powder and titanium foams of relative density ranging from 0.3 to 0.9 were produce...
With superior mechanical and biological properties, titanium-based foams have potentially beneficial...
To facilitate the design and application of porous titanium and titanium foam, numerical simulation ...
To facilitate the design and development of porous metals, simulation of their mechanical behavior i...
AbstractThe porous microstructures of metallic foams cause microscopic stress and strain localizatio...
Metal foams are relatively novel materials that due to excellent mechanical, thermal, and insulation...
Understanding the mechanical behaviour of pure titanium (Ti) foam is crucial for the design and deve...
Porous metals have been used in various orthopedic applications as coating to promote implant fixati...
Cellular materials have a bulk matrix with a larger number of voids named also cells. Metallic foams...
Under load-bearing conditions metal-based foam scaffolds are currently the preferred choice as bone/...
Under load-bearing conditions metal-based foam scaffolds are currently the preferred choice as bone/...
Titanium foams of relative density in the range 0.35-0.50 are tested in quasi-static compression, te...
Two algorithms are developed to generate virtual microstructures of Titanium foams of medium relativ...
Titanium foams of relative density ranging from 0.3 to 0.9 were produced by titanium powder sinterin...
In the study, both experimental work and numerical modeling are performed to investigate the pore si...
Sintered titanium powder and titanium foams of relative density ranging from 0.3 to 0.9 were produce...
With superior mechanical and biological properties, titanium-based foams have potentially beneficial...
To facilitate the design and application of porous titanium and titanium foam, numerical simulation ...
To facilitate the design and development of porous metals, simulation of their mechanical behavior i...
AbstractThe porous microstructures of metallic foams cause microscopic stress and strain localizatio...
Metal foams are relatively novel materials that due to excellent mechanical, thermal, and insulation...
Understanding the mechanical behaviour of pure titanium (Ti) foam is crucial for the design and deve...
Porous metals have been used in various orthopedic applications as coating to promote implant fixati...
Cellular materials have a bulk matrix with a larger number of voids named also cells. Metallic foams...
Under load-bearing conditions metal-based foam scaffolds are currently the preferred choice as bone/...
Under load-bearing conditions metal-based foam scaffolds are currently the preferred choice as bone/...