Shape memory alloys (SMAs) are a group of metallic materials that exhibit unique properties and, accordingly, draw the interest of scientific communities and industries. The most used SMA in the biomedical field is Nitinol (NiTi). Nowadays, a large majority of SMA medical devices are produced using NiTi alloys, thanks to the material's good workability during the martensite phase, good resistance to corrosion and fatigue, U.S. Food and Drug Administration approval, and good compatibility with magnetic resonance imaging and computer tomography scanning
Shape memory alloys (SMA) are materials that have the ability to return to a former shape when subje...
Shape memory alloys (SMA) are materials that have the ability to return to a former shape when subje...
Shape memory alloys (SMAs) are unique mixtures of metals that have qualities unlike any other substa...
Shape memory alloys (SMAs) are a group of metallic materials that exhibit unique properties and, acc...
Shape memory alloys (SMAs) impart a potential application in a wide range in micro- and nano-industr...
Shapememory alloys, and in particularNiTi alloys, are characterized by two unique behaviors, thermal...
Shapememory alloys, and in particularNiTi alloys, are characterized by two unique behaviors, thermal...
Shape memory alloy (SMA) is a special metal material with unique properties, that is, this material ...
The medical market is a continuing success story for the application of shape memory alloy products....
Shape memory alloys (SMA) are materials with specific electric, mechanic and thermal qualities origi...
Shape memory alloys (SMA) are materials with specific electric, mechanic and thermal qualities origi...
Shape memory alloys (SMAs) are materials that exhibit a distinct thermomechanical coupling, one that...
Shape memory alloys (SMA) have the ability to return to a former shape when subjected to heating. Sh...
Shape memory alloys (SMAs) are materials that exhibit a distinct thermomechanical coupling, one that...
Shape memory alloys remember their shape due to thermoelastic martensitic phase transformation. Thes...
Shape memory alloys (SMA) are materials that have the ability to return to a former shape when subje...
Shape memory alloys (SMA) are materials that have the ability to return to a former shape when subje...
Shape memory alloys (SMAs) are unique mixtures of metals that have qualities unlike any other substa...
Shape memory alloys (SMAs) are a group of metallic materials that exhibit unique properties and, acc...
Shape memory alloys (SMAs) impart a potential application in a wide range in micro- and nano-industr...
Shapememory alloys, and in particularNiTi alloys, are characterized by two unique behaviors, thermal...
Shapememory alloys, and in particularNiTi alloys, are characterized by two unique behaviors, thermal...
Shape memory alloy (SMA) is a special metal material with unique properties, that is, this material ...
The medical market is a continuing success story for the application of shape memory alloy products....
Shape memory alloys (SMA) are materials with specific electric, mechanic and thermal qualities origi...
Shape memory alloys (SMA) are materials with specific electric, mechanic and thermal qualities origi...
Shape memory alloys (SMAs) are materials that exhibit a distinct thermomechanical coupling, one that...
Shape memory alloys (SMA) have the ability to return to a former shape when subjected to heating. Sh...
Shape memory alloys (SMAs) are materials that exhibit a distinct thermomechanical coupling, one that...
Shape memory alloys remember their shape due to thermoelastic martensitic phase transformation. Thes...
Shape memory alloys (SMA) are materials that have the ability to return to a former shape when subje...
Shape memory alloys (SMA) are materials that have the ability to return to a former shape when subje...
Shape memory alloys (SMAs) are unique mixtures of metals that have qualities unlike any other substa...