Additively manufactured (AM) porous metallic biomaterials are considered promising candidates for bone substitution. In particular, AM porous titanium can be designed to exhibit mechanical properties similar to bone. There is some experimental data available in the literature regarding the fatigue behavior of AM porous titanium, but the effect of stress ratio on the fatigue behavior of those materials has not been studied before. In this paper, we study the effect of applied stress ratio on the compression-compression fatigue behavior of selective laser melted porous titanium (Ti-6Al-4V) based on the diamond unit cell. The porous titanium biomaterial is treated as a meta-material in the context of this work, meaning that R-ratios are calcul...
Additive manufacturing (AM) techniques enable fabrication of bone-mimicking meta-biomaterials with u...
In this study, we tried to quantify the isolated and modulated effects of topological design and mat...
Titanium currently used in biomedical implant applications has shown some limitations, one of the mo...
Additively manufactured (AM) porous metallic biomaterials are considered promising candidates for bo...
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...
Additively manufactured porous titanium implants, in addition to preserving the excellent biocompati...
The mechanical behavior of additively manufactured porous biomaterials has recently received increas...
This paper provides new insights into the fatigue properties of porous metallic biomaterials produce...
Although the initial mechanical properties of additively manufactured porous biomaterials are intens...
Additive manufactured (AM) porous materials behave quantitatively and qualitatively differently in f...
Advances in additive manufacturing (AM) techniques have enabled fabrication of highly porous titaniu...
Traditional implants made of bulk titanium are much stiffer than human bone and this mismatch can in...
Fully dense titanium alloy implants have long been used for the replacement and stabilization of dam...
Additive manufacturing (AM) techniques enable fabrication of bone-mimicking meta-biomaterials with u...
Additive manufacturing (AM) techniques enable fabrication of bone-mimicking meta-biomaterials with u...
In this study, we tried to quantify the isolated and modulated effects of topological design and mat...
Titanium currently used in biomedical implant applications has shown some limitations, one of the mo...
Additively manufactured (AM) porous metallic biomaterials are considered promising candidates for bo...
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...
Additively manufactured porous titanium implants, in addition to preserving the excellent biocompati...
The mechanical behavior of additively manufactured porous biomaterials has recently received increas...
This paper provides new insights into the fatigue properties of porous metallic biomaterials produce...
Although the initial mechanical properties of additively manufactured porous biomaterials are intens...
Additive manufactured (AM) porous materials behave quantitatively and qualitatively differently in f...
Advances in additive manufacturing (AM) techniques have enabled fabrication of highly porous titaniu...
Traditional implants made of bulk titanium are much stiffer than human bone and this mismatch can in...
Fully dense titanium alloy implants have long been used for the replacement and stabilization of dam...
Additive manufacturing (AM) techniques enable fabrication of bone-mimicking meta-biomaterials with u...
Additive manufacturing (AM) techniques enable fabrication of bone-mimicking meta-biomaterials with u...
In this study, we tried to quantify the isolated and modulated effects of topological design and mat...
Titanium currently used in biomedical implant applications has shown some limitations, one of the mo...