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



Which is the word Nitinol? Where can it be used?

If you're a medical professional or patient you may be interested in learning more about nitinol and how it is used. Nitinol is an alloy that is utilized for a wide range of medical applications, such as orthopedic staples, medical devices, and shape shape-memory alloys.

Shape memory alloy

In contrast to other materials, shape-memory alloys can remember their previous shape. The effect of shape-memory in two ways is achieved through the force of a machine or by heating. These alloys possess superior mechanical and wear resistance properties. These alloys are often used in the fabrication of orthopedic wires, valves also medical implants.

Shape-memory metals are generally made using vacuum arc, casting, or induction melting. These materials have unique crystalline structures that allow them to shrink and return to the original shape upon heat.

The Shape Memory alloy is known to have super-elastic properties. They are used in various fields such as orthopedics, robotics and neurology. They are also used in the automotive and aerospace industries. The properties that shape-memory metals have has led to their widespread use in medical devices, such as heart valves or stents. These alloys are also used in the chemical processing sector.

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

Stents

The study has been conducted in a variety of ways to study the mechanical properties of Nitinol. This research has revealed that the product has mechanical hysteresis. Also, it has shape memory properties. These properties can be utilized to improve stent design.

Nitinol is a component in many different stents. These stents range in diameter or thickness, the thickness of the strut and design. They can also manufactured with additive manufacturing technology. This allows manufacturers to make individual stents for specific patients circumstances.

Recent research has focused on the mechanical properties of Nitinol stents. The studies utilize a combination of conventional test methods, including bench-top mechanical tests and finite element modelling. This allows researchers to model complex loading conditions that occur in real-life. Through computational modeling, researchers can discover the factors that influence design to provide improved performance.

A study was conducted to determine the mechanical properties of six Nitinol stents. The stents were assessed based on their stiffness, resistance to bending and axial compressibility. The stents ' diameters varied between 5 and 8 mm. They supported themselves by internal rods when compressed.

Staples of orthopedics

Numerous studies have examined the mechanical performance of nitinol in the field of orthopedic staples. A new type of nitinol compliant staples has shown to be successful in arthrodesis of the hindfoot.

Nitinol compression staples may be utilized in bone grafting procedures and can reduce the recovery after surgery. However, this procedure might not be a suitable option to patients with weak bones. Small bones may be difficult to fuse, and any nonunion could cause early-onset arthritis.

The nitinol-memory compression staple an extremely new product to the market for carpal bone fixation. The staple is constructed from an ultraelastic TiNi alloy and permits natural compression as bone heals. It can be used to give adequate compression, while also preventing damage to the cartilage that is located in the proximal region of the dorsal.

Compression staples can be utilized to stabilize subtalar joints as well as talonavicular Fusions. In addition, they are employed to treat other foot ailments. They can also be used to perform osteotomy procedures. They could not be secure enough for small bone applications as they can disrupt osteotomies.

Newer nitinol compression staples have been found to be both safe and effective in hindfoot arthrodesis. The study also examined the distinctions between double and single-staple design. The newer generation of Nitinol staples displayed significant radiographic union.

Medical devices

Many years ago the medical field began to realize the many benefits of using Nitinol when it comes to medical gadgets. The material is famous for its extraordinary elasticity, which enables it to stretch back to its original form under pressure. Nitinol's properties make it a viable option for orthopedic implants, stents, and catheters.

The advantages of Nitinol used in medical devices are substantial, and the material opens up numerous different markets for medical products. However, the properties of the material can pose some difficulties. Knowing the risks that could be associated with the material is essential.

The Federal Drug Administration (FDA) recently issued a draft guideline for medical device manufacturers regarding how to develop and test devices using Nitinol. The guidance outlines the most significant suggestions for medical devices that use Nitinol.

The guidance covers all medical devices that contain Nitinol. It outlines the information that manufacturers have to supply during premarket submission, including information on the creation, manufacturing or testing procedures for their products. It also contains information regarding Nitinol's biocompatibility.

about RBOSCHCO" Nitinol Powder Supplier

RBOSCHCO is a reputable international chemical material supplier and manufacturer with more than 12 years of experience in manufacturing top-quality chemicals and Nanomaterials. It exports to many countries, including these include 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 leading development manufacturer, RBOSCHCO dominates the market. Our skilled and experienced team offers the most effective solutions to increase the effectiveness of different sectors, produce value and effortlessly meet a variety of difficulties. If you're seeking Nitinol powder for sale, please contact RBOSCHCO.

Inquiry us

  • tags

Metal Alloy 8.92g/Cm3 High Purity Polished Copper Plate

Metal Alloy 18.5g/cm3 Polished Tungsten Heavy Alloy Plate

Metal Alloy 18g/cm3 High Density Tungsten Alloy Ball

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

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

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

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

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

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

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

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

High Purity 3D Printing Nickel-based Alloy IN738 Powder

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

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

Supply Magnesium Granules Mg Granules 99.95%

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

High Purity 3D Printing 304 Stainless Steel Powder

High Purity Zirconium Nitride ZrN Powder CAS 25658-42-8, 99.5%

High Purity Tungsten Boride WB2 Powder CAS 12007-09-9, 99%

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

Our Latest Products

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 high wear resistance. They are widely used by the electricity, electronics and energy industries. Metal Al…

Metal Alloy 18.5g/cm3 Polished Tungsten Heavy Alloy Plate

Tungsten alloy heavy plate has low thermal expansion. It is also known for its high density, high thermal conductivity, and radiation absorption. It is used widely in the aerospace and medical industries. About Metal Alloy 18.5g/cm3 Polished Tungst…

Metal Alloy 18g/cm3 High Density Tungsten Alloy Ball

W-Ni - Cu alloy is used in the production of Tungsten alloy balls. It is widely utilized in the fields of aviation, oil drilling, military and aerospace. High Density Tungsten Alloy Metal Ball, 18g/cm3 Diameter: 1.0mm-150.0mm Surface: sinter…