Superelastic titanium (Ti) alloys are a group of unique functional metallic materials capable of recovering a substantial amount of mechanical strain thereby offering superior resilience. Such strain recovery is significantly greater than that exhibited by conventional elasticity and has been demonstrated to be clearly beneficial and necessary for a vast range of biomedical and dental applications. For example, the age-related physiological deterioration of bones signifies the necessity of employing superelastic implants. Currently, NiTi alloy remains to be the premier choice of superelastic alloys in the broad biomedical sector. However, recently reinforced views on the toxic, carcinogenic and allergenic properties of nickel have resulted ...
NiTi alloy is the only practical shape memory alloy (SMA) in biomedical use because of its excellent...
In recent years, there has been increasing prominence on materials applications in biomedical areas....
Shape memory alloys (SMAs), such as Nitinol (i.e., NiTi), are of great importance in biomedical and ...
Superelasticity refers to a type of elastic response exhibited by certain materials to an applied st...
A potential new Ni-free Ti alloy for biomedical applications was assessed in order to investigate th...
Titanium-nickel (Ti-Ni) shape memory alloys have been widely used for biomedical applications in rec...
Titanium and its alloys have a high specific strength, excellent corrosion resistance, and good bioc...
NiTi alloy is the only practical shape memory alloy (SMA) in biomedical use because of its excellent...
NiTi alloy is the only practical shape memory alloy (SMA) in biomedical use because of its excellent...
Titanium and its alloys have a high specific strength, excellent corrosion resistance, and good bioc...
Nb, Ta and Zr are the favorable non-toxic alloying elements for titanium alloys for biomedical appli...
International audienceIn this this work, superelastic NiTi and Ni-free Ti-23Hf-3Mo-4Sn biomedical al...
Shape memory alloys (SMAs) are materials that exhibit a distinct thermomechanical coupling, one that...
Infection is the leading cause of biomedical implant failure, making the incorporation of antibacter...
Shape memory alloys (SMAs) are materials that exhibit a distinct thermomechanical coupling, one that...
NiTi alloy is the only practical shape memory alloy (SMA) in biomedical use because of its excellent...
In recent years, there has been increasing prominence on materials applications in biomedical areas....
Shape memory alloys (SMAs), such as Nitinol (i.e., NiTi), are of great importance in biomedical and ...
Superelasticity refers to a type of elastic response exhibited by certain materials to an applied st...
A potential new Ni-free Ti alloy for biomedical applications was assessed in order to investigate th...
Titanium-nickel (Ti-Ni) shape memory alloys have been widely used for biomedical applications in rec...
Titanium and its alloys have a high specific strength, excellent corrosion resistance, and good bioc...
NiTi alloy is the only practical shape memory alloy (SMA) in biomedical use because of its excellent...
NiTi alloy is the only practical shape memory alloy (SMA) in biomedical use because of its excellent...
Titanium and its alloys have a high specific strength, excellent corrosion resistance, and good bioc...
Nb, Ta and Zr are the favorable non-toxic alloying elements for titanium alloys for biomedical appli...
International audienceIn this this work, superelastic NiTi and Ni-free Ti-23Hf-3Mo-4Sn biomedical al...
Shape memory alloys (SMAs) are materials that exhibit a distinct thermomechanical coupling, one that...
Infection is the leading cause of biomedical implant failure, making the incorporation of antibacter...
Shape memory alloys (SMAs) are materials that exhibit a distinct thermomechanical coupling, one that...
NiTi alloy is the only practical shape memory alloy (SMA) in biomedical use because of its excellent...
In recent years, there has been increasing prominence on materials applications in biomedical areas....
Shape memory alloys (SMAs), such as Nitinol (i.e., NiTi), are of great importance in biomedical and ...