Advances in additive manufacturing (AM) techniques have enabled fabrication of highly porous titanium implants that combine the excellent biocompatibility of bulk titanium with all the benefits that a regular volume-porous structure has to offer (e.g. lower stiffness values comparable to those of bone). Clinical application of such biomaterials requires thorough understanding of their mechanical behavior under loading. Computational models have been therefore developed by various groups for prediction of their quasi-static mechanical properties. The fatigue behavior of AM porous biomaterials is, however, not well understood. In particular, computational models predicting the fatigue response of these structures are rare. That is primarily d...
Additive manufacturing (AM) has enabled the fabrication of complex geometries directly from the desi...
AbstractLaser Additive Manufacturing (LAM) enables economical production of complex lightweight stru...
© 2014 The Authors. Published by Elsevier B.V. Laser Additive Manufacturing (LAM) enables economical...
Advances in additive manufacturing (AM) techniques have enabled fabrication of highly porous titaniu...
The mechanical behavior of additively manufactured porous biomaterials has recently received increas...
Additively manufactured porous titanium implants, in addition to preserving the excellent biocompati...
Additively manufactured (AM) porous metallic biomaterials are considered promising candidates for bo...
The fatigue performance of additively manufactured auxetic meta-biomaterials made from commercially ...
Meta-biomaterials are porous biomaterials created by additive manufacturing techniques such as Selec...
Meta-materials are structures when their small-scale properties are considered, but behave as materi...
Additive Manufacturing (AM) has gained a lot of interest due to the freedom to produce complex metal...
Although the initial mechanical properties of additively manufactured porous biomaterials are intens...
This paper provides new insights into the fatigue properties of porous metallic biomaterials produce...
Porous titanium scaffolds exhibit elastic properties close to that of bone, and they can promote oss...
Laser Additive Manufacturing (LAM) enables economical production of complex lightweight structures a...
Additive manufacturing (AM) has enabled the fabrication of complex geometries directly from the desi...
AbstractLaser Additive Manufacturing (LAM) enables economical production of complex lightweight stru...
© 2014 The Authors. Published by Elsevier B.V. Laser Additive Manufacturing (LAM) enables economical...
Advances in additive manufacturing (AM) techniques have enabled fabrication of highly porous titaniu...
The mechanical behavior of additively manufactured porous biomaterials has recently received increas...
Additively manufactured porous titanium implants, in addition to preserving the excellent biocompati...
Additively manufactured (AM) porous metallic biomaterials are considered promising candidates for bo...
The fatigue performance of additively manufactured auxetic meta-biomaterials made from commercially ...
Meta-biomaterials are porous biomaterials created by additive manufacturing techniques such as Selec...
Meta-materials are structures when their small-scale properties are considered, but behave as materi...
Additive Manufacturing (AM) has gained a lot of interest due to the freedom to produce complex metal...
Although the initial mechanical properties of additively manufactured porous biomaterials are intens...
This paper provides new insights into the fatigue properties of porous metallic biomaterials produce...
Porous titanium scaffolds exhibit elastic properties close to that of bone, and they can promote oss...
Laser Additive Manufacturing (LAM) enables economical production of complex lightweight structures a...
Additive manufacturing (AM) has enabled the fabrication of complex geometries directly from the desi...
AbstractLaser Additive Manufacturing (LAM) enables economical production of complex lightweight stru...
© 2014 The Authors. Published by Elsevier B.V. Laser Additive Manufacturing (LAM) enables economical...