Additively manufacturing (AM) techniques make it possible to fabricate open-cell interconnected structures with precisely controllable micro-architectures. It has been shown that the morphology, pore size, and relative density of a porous structure determine its macro-scale homogenized mechanical properties and, thus, its biological performance as a biomaterial. In this study, we used analytical, numerical, and experimental techniques to study the elastic modulus, Poisson`s ratio, and yield stress of AM porous biomaterials made by repeating the same octahedral unit cell in all spatial directions. Analytical relationships were obtained based on both Euler-Bernoulli and Timoshenko beam theories by studying a single unit cell experiencing the ...
Lattice and porous structures have attracted attention in scientific literature due to the developme...
Due to their interesting properties and diverse applications, porous solids and cellular materials a...
The significantly growing use of Additive Manufacturing (AM) enables the fabrication of innovative p...
Additively manufacturing (AM) techniques make it possible to fabricate open-cell interconnected stru...
Recent developments in additive manufacturing techniques have motivated an increasing number of rese...
<p>Additive manufacturing techniques have made it possible to create open-cell porous structures wit...
Cellular structures with highly controlled micro-architectures are promising materials for orthopedi...
In this study, we tried to quantify the isolated and modulated effects of topological design and mat...
Today, interconnected open-cell porous structures made of titanium and its alloys are replacing the ...
Today, interconnected open-cell porous structures made of titanium and its alloys are replacing the ...
It is known that the mechanical properties of bone-mimicking porous biomaterials are a function of t...
SLM accuracy for fabricating porous materials is a noteworthy hindrance when aiming to obtain biomat...
There is an increased interest to produce open porous metallic lattice structures with regular unit ...
Permeable porous implants must satisfy several physical and biological requirements in order to be p...
Cellular materials are gaining interest thanks to developments in additive manufacturing. Whilst Fin...
Lattice and porous structures have attracted attention in scientific literature due to the developme...
Due to their interesting properties and diverse applications, porous solids and cellular materials a...
The significantly growing use of Additive Manufacturing (AM) enables the fabrication of innovative p...
Additively manufacturing (AM) techniques make it possible to fabricate open-cell interconnected stru...
Recent developments in additive manufacturing techniques have motivated an increasing number of rese...
<p>Additive manufacturing techniques have made it possible to create open-cell porous structures wit...
Cellular structures with highly controlled micro-architectures are promising materials for orthopedi...
In this study, we tried to quantify the isolated and modulated effects of topological design and mat...
Today, interconnected open-cell porous structures made of titanium and its alloys are replacing the ...
Today, interconnected open-cell porous structures made of titanium and its alloys are replacing the ...
It is known that the mechanical properties of bone-mimicking porous biomaterials are a function of t...
SLM accuracy for fabricating porous materials is a noteworthy hindrance when aiming to obtain biomat...
There is an increased interest to produce open porous metallic lattice structures with regular unit ...
Permeable porous implants must satisfy several physical and biological requirements in order to be p...
Cellular materials are gaining interest thanks to developments in additive manufacturing. Whilst Fin...
Lattice and porous structures have attracted attention in scientific literature due to the developme...
Due to their interesting properties and diverse applications, porous solids and cellular materials a...
The significantly growing use of Additive Manufacturing (AM) enables the fabrication of innovative p...