NiTi alloy is the only practical shape memory alloy (SMA) in biomedical use because of its excellent mechanical stability and functionality. However, it is estimated that between 4.5% and 28.5% of the population are hypersensitive to nickel metal, with a higher prevalence in females. Therefore, developing nickel-free low modulus beta-type titanium alloys showing shape memory or super elastic behavior would have a great interest in the biomaterials field. Homogeneous 127 mu m diameter Ti25Hf21Nb wires were produced and compared to straight annealed Ti-50.8 at% Ni (Nitinol) and 90% cold-drawn 316L wires. Microstructural changes taking place during the heat treatment of cold-worked Ti25Hf21Nb wires were investigated. Large plastic deformation ...
The main properties of Ni-Ti alloys, i.e., shape memory and superelasticity, are used in engineering...
OBJECTIVE: A systematic review on nickel-titanium wires was performed. The strategy was focused on E...
International audienceIn this this work, superelastic NiTi and Ni-free Ti-23Hf-3Mo-4Sn biomedical al...
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...
The objective of this work is to understand the structure-property relationships in a pseudoelastic ...
Ni-Ti shape memory alloys (SMA), have interesting functional properties such as shape memory effect ...
Shape memory alloys (SMAs) are a new generation material which exhibits unique nonlinear deformation...
Nitinol, a nickel titanium alloy, is widely used as a biocompatible metal with applications in high ...
Ni-Ti shape memory alloys (SMA), have interesting functional properties such as shape memory effect ...
Actuator applications of shape memory alloys have typically been limited by their phase transformati...
Titanium-nickel is a unique class of material known as Shape Memory Alloy (SMA). A thermoelastic mar...
Actuator applications of shape memory alloys have typically been limited by their phase transformati...
Superelastic titanium (Ti) alloys are a group of unique functional metallic materials capable of rec...
Smart structures are defined as structures that able to adapt and maintain structural characteristic...
The main properties of Ni-Ti alloys, i.e., shape memory and superelasticity, are used in engineering...
OBJECTIVE: A systematic review on nickel-titanium wires was performed. The strategy was focused on E...
International audienceIn this this work, superelastic NiTi and Ni-free Ti-23Hf-3Mo-4Sn biomedical al...
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...
The objective of this work is to understand the structure-property relationships in a pseudoelastic ...
Ni-Ti shape memory alloys (SMA), have interesting functional properties such as shape memory effect ...
Shape memory alloys (SMAs) are a new generation material which exhibits unique nonlinear deformation...
Nitinol, a nickel titanium alloy, is widely used as a biocompatible metal with applications in high ...
Ni-Ti shape memory alloys (SMA), have interesting functional properties such as shape memory effect ...
Actuator applications of shape memory alloys have typically been limited by their phase transformati...
Titanium-nickel is a unique class of material known as Shape Memory Alloy (SMA). A thermoelastic mar...
Actuator applications of shape memory alloys have typically been limited by their phase transformati...
Superelastic titanium (Ti) alloys are a group of unique functional metallic materials capable of rec...
Smart structures are defined as structures that able to adapt and maintain structural characteristic...
The main properties of Ni-Ti alloys, i.e., shape memory and superelasticity, are used in engineering...
OBJECTIVE: A systematic review on nickel-titanium wires was performed. The strategy was focused on E...
International audienceIn this this work, superelastic NiTi and Ni-free Ti-23Hf-3Mo-4Sn biomedical al...