ß-Type titanium alloys with a low elastic modulus are a potential strategy to reduce stress shielding effect and to enhance bone remodeling in implants used to substitute failed hard tissue. For biomaterial application, investigation on the mechanical behavior, the corrosion resistance and the cell response is required. The new Ti25Nb16Hf alloy was studied before and after 95% cold rolling (95% C.R.). The mechanical properties were determined by tensile testing and its corrosion behavior was analyzed by potentiostatic equipment in Hank's solution at 37 °C. The cell response was studied by means of cytotoxicity evaluation, cell adhesion and proliferation measurements. The stress–strain curves showed the lowest elastic modulus (42 GPa) in the...
In recent years, there has been increasing prominence on materials applications in biomedical areas....
Metastable β titanium alloys are developed for biomedical applications due to their low Young’s modu...
The concept of mechanical biocompatibilities is considered an important factor for orthopedics and d...
ß-Type titanium alloys with a low elastic modulus are a potential strategy to reduce stress shieldin...
beta-Type titanium alloys with a low elastic modulus are a potential strategy to reduce stress shiel...
Nowadays, one of the main challenges in metal implants for bone substitution is the achievement of a...
beta-Type titanium alloys with a low elastic modulus are a potential strategy to enhance bone remode...
A new porous Ti–35Nb–5In alloy was designed to join the advantages of low elastic modulus and non-to...
In this study, the in vitro degradation behaviour of titanium–tantalum (Ti–Ta) alloys (10–30 wt.% Ta...
b-type titanium alloys with low Young’s modulus are desirable to reduce stress shielding effect and ...
With CP Ti sample as control, the electrochemical measurements were used to investigate the corrosio...
In metallurgy, titanium has been a staple for biomedical purposes. Its slow toxicity and alloying ve...
In metallurgy, titanium has been a staple for biomedical purposes. Its slow toxicity and alloying ve...
Titanium alloys belong to a group of perspective biomaterials used for production of joint endoproth...
Compared to other alloys, Ti6Al4V is the most used in medicine. In recent years, concerns regarding ...
In recent years, there has been increasing prominence on materials applications in biomedical areas....
Metastable β titanium alloys are developed for biomedical applications due to their low Young’s modu...
The concept of mechanical biocompatibilities is considered an important factor for orthopedics and d...
ß-Type titanium alloys with a low elastic modulus are a potential strategy to reduce stress shieldin...
beta-Type titanium alloys with a low elastic modulus are a potential strategy to reduce stress shiel...
Nowadays, one of the main challenges in metal implants for bone substitution is the achievement of a...
beta-Type titanium alloys with a low elastic modulus are a potential strategy to enhance bone remode...
A new porous Ti–35Nb–5In alloy was designed to join the advantages of low elastic modulus and non-to...
In this study, the in vitro degradation behaviour of titanium–tantalum (Ti–Ta) alloys (10–30 wt.% Ta...
b-type titanium alloys with low Young’s modulus are desirable to reduce stress shielding effect and ...
With CP Ti sample as control, the electrochemical measurements were used to investigate the corrosio...
In metallurgy, titanium has been a staple for biomedical purposes. Its slow toxicity and alloying ve...
In metallurgy, titanium has been a staple for biomedical purposes. Its slow toxicity and alloying ve...
Titanium alloys belong to a group of perspective biomaterials used for production of joint endoproth...
Compared to other alloys, Ti6Al4V is the most used in medicine. In recent years, concerns regarding ...
In recent years, there has been increasing prominence on materials applications in biomedical areas....
Metastable β titanium alloys are developed for biomedical applications due to their low Young’s modu...
The concept of mechanical biocompatibilities is considered an important factor for orthopedics and d...