In the present manuscript, we report on the properties of an equiatomic Ta-Nb-Ti alloy as the basis for a novel, biomedical, multi-component alloy development. The alloy was produced using an arc melting furnace under Ar atmosphere, metallographically prepared, and investigated respectively. Furthermore, the alloy produced, as well as samples of elemental Ta, Nb, alloy Co-28Cr-6Mo, and alloy Ti-6Al-4V, were prepared with defined 1200 grit SiC grinding paper. The topography of the surfaces was evaluated using confocal microscopy and contact angle measurements subsequently. Afterwards, the biocompatibility of the novel alloy Ta-Nb-Ti was evaluated by means of cell (osteoblast) attachment as well as monocyte inflammatory response analysis. Fir...
Titanium and its alloys have a high specific strength, excellent corrosion resistance, and good bioc...
Nowadays, one of the main challenges in metal implants for bone substitution is the achievement of a...
In metallurgy, titanium has been a staple for biomedical purposes. Its slow toxicity and alloying ve...
In the present manuscript, we report on the properties of an equiatomic Ta-Nb-Ti alloy as the basis ...
Many current-generation biomedical implants are fabricated from the Ti-6Al-4V alloy because it has m...
The aim of this study was to prepare a novel titanium-10tantalum-10niobium (Ti-Ta-Nb) alloy nanoscal...
The concept of mechanical biocompatibilities is considered an important factor for orthopedics and d...
Metallic biomedical implants such as titanium-based alloys are very useful for orthopaedic applicat...
In the present research paper, two systems based on Ti-Nb-Zr-Ta and Ti-Nb-Zr–Fe, containing non-toxi...
In this study, a Ti-(Ta,Nb)-Fe system was investigated with aims toward the development of high stre...
The purpose of research in the biomaterials field is to produce new materials with physical and chem...
Shape memory alloys (SMAs) are materials that exhibit a distinct thermomechanical coupling, one that...
Biocompatible Ti, Nb and Mo alloy was fabricated in search of a novel biomaterial for bone regenerat...
Nb, Ta and Zr are the favorable non-toxic alloying elements for titanium alloys for biomedical appli...
Research on new titanium alloys and different surface topographies aims to improve osseointegration....
Titanium and its alloys have a high specific strength, excellent corrosion resistance, and good bioc...
Nowadays, one of the main challenges in metal implants for bone substitution is the achievement of a...
In metallurgy, titanium has been a staple for biomedical purposes. Its slow toxicity and alloying ve...
In the present manuscript, we report on the properties of an equiatomic Ta-Nb-Ti alloy as the basis ...
Many current-generation biomedical implants are fabricated from the Ti-6Al-4V alloy because it has m...
The aim of this study was to prepare a novel titanium-10tantalum-10niobium (Ti-Ta-Nb) alloy nanoscal...
The concept of mechanical biocompatibilities is considered an important factor for orthopedics and d...
Metallic biomedical implants such as titanium-based alloys are very useful for orthopaedic applicat...
In the present research paper, two systems based on Ti-Nb-Zr-Ta and Ti-Nb-Zr–Fe, containing non-toxi...
In this study, a Ti-(Ta,Nb)-Fe system was investigated with aims toward the development of high stre...
The purpose of research in the biomaterials field is to produce new materials with physical and chem...
Shape memory alloys (SMAs) are materials that exhibit a distinct thermomechanical coupling, one that...
Biocompatible Ti, Nb and Mo alloy was fabricated in search of a novel biomaterial for bone regenerat...
Nb, Ta and Zr are the favorable non-toxic alloying elements for titanium alloys for biomedical appli...
Research on new titanium alloys and different surface topographies aims to improve osseointegration....
Titanium and its alloys have a high specific strength, excellent corrosion resistance, and good bioc...
Nowadays, one of the main challenges in metal implants for bone substitution is the achievement of a...
In metallurgy, titanium has been a staple for biomedical purposes. Its slow toxicity and alloying ve...