Shape memory alloys (SMAs) are materials that exhibit a distinct thermomechanical coupling, one that gives rise to a wide variety of applications across a broad range of fields. One of the most successful roles is in the construction of novel medical implants. Unfortunately, concerns have been raised about the biocompatibility of the most popular SMA, nitinol (NiTi), due to the known toxic, allergenic and carcinogenic properties of nickel. Given the unique capabilities of SMAs, it is apparent that there is a need for a new class of alloys - alloys that exhibit the full range of shape memory abilities yet are also free of any undesirable side effects. This article reviews the literature surrounding SMAs and identifies the metals Ti, Au, Sn, Ta...
Stress shielding is a potential problem facing the long-term reliability of structural medical impla...
Superelastic titanium (Ti) alloys are a group of unique functional metallic materials capable of rec...
The concept of mechanical biocompatibilities is considered an important factor for orthopedics and d...
Shape memory alloys (SMAs) are materials that exhibit a distinct thermomechanical coupling, one that...
In the realm of bioimplantation, titanium-based Shape Memory Alloys (SMAs) exhibit phenomenal versat...
In the realm of bioimplantation, titanium-based Shape Memory Alloys (SMAs) exhibit phenomenal versat...
Owing to the world population aging, biomedical materials, such as shape memory alloys (SMAs) have a...
Shape memory alloys provide new areas for the design of biomaterials in biomedical engineering and a...
The day-by-day increasing pollution is lowering down the human health and utility of human organs. T...
NiTi is only one of many alloy systems that exhibit the shape memory effect. The reason of his succe...
Titanium-nickel (Ti-Ni) shape memory alloys have been widely used for biomedical applications in rec...
Shape memory alloys (SMA) have the ability to return to a former shape when subjected to heating. Sh...
Abstract. NiTi is only one of many alloy systems that exhibit the shape memory effect. The reason of...
Shape memory alloys (SMAs) are a group of metallic materials that exhibit unique properties and, acc...
Shape memory alloys (SMAs) are a group of metallic materials that exhibit unique properties and, acc...
Stress shielding is a potential problem facing the long-term reliability of structural medical impla...
Superelastic titanium (Ti) alloys are a group of unique functional metallic materials capable of rec...
The concept of mechanical biocompatibilities is considered an important factor for orthopedics and d...
Shape memory alloys (SMAs) are materials that exhibit a distinct thermomechanical coupling, one that...
In the realm of bioimplantation, titanium-based Shape Memory Alloys (SMAs) exhibit phenomenal versat...
In the realm of bioimplantation, titanium-based Shape Memory Alloys (SMAs) exhibit phenomenal versat...
Owing to the world population aging, biomedical materials, such as shape memory alloys (SMAs) have a...
Shape memory alloys provide new areas for the design of biomaterials in biomedical engineering and a...
The day-by-day increasing pollution is lowering down the human health and utility of human organs. T...
NiTi is only one of many alloy systems that exhibit the shape memory effect. The reason of his succe...
Titanium-nickel (Ti-Ni) shape memory alloys have been widely used for biomedical applications in rec...
Shape memory alloys (SMA) have the ability to return to a former shape when subjected to heating. Sh...
Abstract. NiTi is only one of many alloy systems that exhibit the shape memory effect. The reason of...
Shape memory alloys (SMAs) are a group of metallic materials that exhibit unique properties and, acc...
Shape memory alloys (SMAs) are a group of metallic materials that exhibit unique properties and, acc...
Stress shielding is a potential problem facing the long-term reliability of structural medical impla...
Superelastic titanium (Ti) alloys are a group of unique functional metallic materials capable of rec...
The concept of mechanical biocompatibilities is considered an important factor for orthopedics and d...