Trending

News

  • 0
  • 0

What is Nitinol and Where is it Used

If you are looking for high-quality products, please feel free to contact us and send an inquiry, email: brad@ihpa.net



Why is it called Nitinol? What is its Use?

whether you're a healthcare professional or a patient, it is possible that you would like in learning more about nitinol and where it can be found. Nitinol is an alloy that is utilized for a wide range of medical applications, including orthopedic staples, medical devices, and shape shape-memory alloys.

The alloy that forms the shape memory

In contrast to other substances, shape memory alloys can be remembered their previous shape. This effect, which is two-way, can be accomplished by using thermal or mechanical forces. The alloys have superior wear and mechanical properties. These alloys are widely used in the manufacture of valves, wires for orthopedic use, and medical implants.

Shape-memory alloys are typically created by vacuum arc melting, casting or induction melting. These materials feature distinctive crystal structures that permit them to change shape and return to their original form after the heating process.

Shape memory alloys are also well-known for their super-elastic characteristics. They are used in various fields such as orthopedics, robotics as well as neurology. They are also utilized in the aerospace and automotive industries. The properties of these alloys are the reason for their wide application in medical devices including heart valves, and stents. These materials are also used in the chemical processing industry.

Shape-memory alloys are a combination of nickel and titanium, and they are considered to be engineering materials. They are well-suited for the automotive industry, and they also have excellent wear and corrosion resistance.

Stents

Different studies have been conducted in order to understand the mechanical properties of Nitinol. The results of these studies show that the material has mechanical hysteresis. Also, it has shape memory properties. These properties can be utilized to improve stent design.

Nitinol is used in many different stents. These stents vary in diameter along with thickness, thickness, and design. They are also made by using additive manufacturing technology. This allows manufacturers to create customized stents to meet specific patient health conditions.

Recent studies have investigated how Nitinol's stents' mechanical characteristics are affected. These studies use a combination of common testing techniques including bench-top mechanical tests as well as finite-element modeling. This allows researchers to simulate complicated loading conditions in vivo. With the help of computational modeling, researchers can find out which design factors contribute to better performance.

One study measured the mechanics properties of six Nitinol stents. The stents were assessed based on their resistance, bending stiffness, and axial compression. The stents ' diameters were between 5 and 8 mm. These were supported with internal rods during compression.

Staples of orthopedics

Multiple studies have been conducted to study the mechanical characteristics of nitinol used in orthopedic staples. A new type of nitinol based compression staples has been tested and proven effective in arthrodesis of the hindfoot.

Nitinol compression staples are employed in conjunction with bone grafting and could slow down recovery post-surgery. However, this procedure might not be the best option for patients with small bones. Small bones may be difficult for fusion, and nonunion could cause early-onset arthritis.

The nitinol-memory compression staple relatively new to the market for carpal bone fixation. It is made of superelastic TiNi alloy, which allows for natural compression as bone heals. It is able to provide adequate compression while avoiding injury to the cartilage's proximal dorsal.

Compression staples are also used in the treatment of subtalar joint and talonavicular fuses. In addition, they are employed to treat other foot ailments. They are also used to perform osteotomy procedures. They might not be sturdy enough for use on small bone as they can disrupt osteotomies.

New-generation Nitinol compression staples are been shown to be secure and effective in treating arthrodesis of the hindfoot. The study also looked at the differences between single and double-staple design. The newer generation of Nitinol staples displayed high rates of radiographic union.

Medical devices

In the past few years, the medical profession began to comprehend the many benefits of the use of Nitinol used in devices that aid the medical field. The material is famous for its super-elasticity, which allows it to stretch back in its original shape under pressure. The characteristics of Nitinol make it a viable option for orthopedic implants, catheters, and stents.

The benefits of Nitinol medical devices are substantial and the product has opened up several market opportunities for medical professionals. However, the properties that the substance has pose several challenges. Knowing the risks that could be associated with the material is crucial.

The Federal Drug Administration (FDA) recently released a draft guidance for medical device manufacturers on how to create and test devices that contain Nitinol. It offers the most important instructions for medical devices containing Nitinol.

The scope of the guidelines encompasses all medical devices that contain nicotine. It outlines the information that manufacturers must include in their premarket application, which includes information regarding the manufacturing, design, and test of the devices. It also contains information about the biocompatibility of Nitinol.

More About RBOSCHCO- Nitinol powder manufacturer

RBOSCHCO is a trusted chemical material supplier and manufacturer with over 13 years' of know-how manufacturing top-quality chemicals and Nanomaterials. The company exports its products to many countries, including that of the USA, Canada, Europe, UAE, South Africa, Tanzania, Kenya, Egypt, Nigeria, Cameroon, Uganda, Turkey, Mexico, Azerbaijan, Belgium, Cyprus, Czech Republic, Brazil, Chile, Argentina, Dubai, Japan, Korea, Vietnam, Thailand, Malaysia, Indonesia, Australia, Germany, France, Italy, Portugal and others. As a major nanotechnology manufacturer, RBOSCHCO dominates the market. Our professional work team provides efficient solutions to boost the efficiency of different industries, boost value and efficiently meet the many problems. If you're looking for Nitinol powder for sale, please contact RBOSCHCO.

Inquiry us

  • tags

High Purity 3D Printing Nickel Alloy IN718 Powder

Metal Alloy High Density Tungsten Alloy Rod Grind Surface Tungsten Alloy Bar

Metal Alloy 8.92g/Cm3 High Purity Polished Copper Plate

Metal Alloy 18g/cm3 High Density Tungsten Alloy Ball

Metal Alloy 18.5g/cm3 Polished Tungsten Heavy Alloy Plate

High Purity Germanium Sulfide GeS2 Powder CAS 12025-34-2, 99.99%

High Purity Molybdenum Boride MoB2 Powder CAS 12006-99-4, 99%

High Purity Nano Hafnium Hf powder CAS 7440-58-6, 99%

High Purity Titanium Sulfide TiS2 Powder CAS 2039-13-3, 99.99%

High Purity Nano Ag Silver powder cas 7440-22-4, 99%

High Purity Chromium Diboride CrB2 Powder CAS 12007-16-8, 99%

High Purity Tungsten Silicide WSi2 Powder CAS 12039-88-2, 99%

High Purity 3D Printing Nickel-based Alloy IN738 Powder

High Purity Calcium Nitride Ca3N2 Powder CAS 12013-82-0, 99.5%

Supply Magnesium Granules Mg Granules 99.95%

High Purity 3D Printing Powder 15-5 Stainless Steel Powder

High Purity Silicon Sulfide SiS2 Powder CAS 13759-10-9, 99.99%

High Purity Colloidal Silver Nano Silver Solution CAS 7440-22-4

High Purity Silicon Nitride Si3N4 Powder CAS 12033-89-5, 99%

High Purity 3D Printing 304 Stainless Steel Powder

Our Latest Products

High Purity 3D Printing Nickel Alloy IN718 Powder

In718 Powder is widely used for industrial and aviation turbo-propellers, petrochemical, nuclear reactors, and laser cladding.Particle Size: 15-45mm; 15-53mm; 53-120mm and 53-150mm 3D Printing Nickel Alloy Inconel 718 Properties: Nickel Alloy IN…

Metal Alloy High Density Tungsten Alloy Rod Grind Surface Tungsten Alloy Bar

Tungsten-nickel-copper/iron alloy is characterized by low thermal expansion, high density, radiation absorption and high thermal and electrical conductivity. It is widely utilized in the aerospace and medical industries. About High Density Tungsten…

Metal Alloy 8.92g/Cm3 High Purity Polished Copper Plate

Copper products exhibit good electrical conductivity as well as thermal conductivity. They are also ductile, resistant to corrosion, and have a high wear resistance. They are widely used by the energy, petrochemical, e-commerce, and electronics indus…