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    The Applications of Nickel Titanium Alloy Powder

    Overview Nickel Titanium Alloy Pulp
    Nitinol is also known as Nitinol. It is a combination of nickel, titanium and metals. The atomic percentages are almost equal. Different alloys can be named according to their nickel content (such as nickel). Nitinol 55 & Nitinol60. They have shape memory effects and super elasticity at different temperatures.
    Nitinol can be used in medical applications as a functional material.
    Memorable alloys not only have an exceptional shape memory function but also have outstanding properties like wear resistance and corrosion resistance as well as super elasticity.
    Nitinol has two closely related and unique properties: shape memory effect and superelasticity(also known as pseudoelasticity).Shape memory is the ability of Nitinol to deform at a certain temperature,maintain its deformed shape when external force is removed,and then restore its original undeformed shape when heated to above its"transition temperature".Superelasticity is the ability of a metal to withstand large deformations and immediately restore its undeformed shape after the external load is removed.The deformation of Nitinol is 10 to 30 times that of ordinary metals and can restore its original shape.Whether Nitinol alloy shows shape memory effect or superelasticity depends on whether it is higher than the transition temperature of the specific alloy.Below the transition temperature,it exhibits a shape memory effect.
    Nitinol Nickel Titanium Ni­Ti Alloy powder
    What are the applications of Nickel Titanium Alloy Powder
    It is a highly functional material.
    The tensile strength of Nitinol can reach 1000 MPa.In other words,it takes more than 100 dry grams per square millimeter to destroy it.This force is stronger than ordinary steel,and it also has good"memory"performance and corrosion resistance.
    Nitinol alloy contains 50%nickel and 50% titanium,that is to say,nickel and titanium are equally divided,each accounting for half.The temperature range of the shape memory can be adjusted by the control component.Generally,the higher the nickel content of Nitinol,the lower the operating temperature.When it contains 55% nickel and 45% titanium,the memory alloy can work at room temperature.
    This feature of shape memories alloys has been used by people to create pearl necklaces and bracelets using shape memory alloys wires. Also, bras woven with shape memory alloy wires can be made to correct misaligned teeth, based on the body’s oral temperature.
    Nitinol is a replacement for traditional actuators such as solenoid valves, servomotors, etc. ), such as Stiquito, a simple hexapod robotic robot.
    Fluid thermal valves make use of Nitinol Springs. This material acts both as a temperature sensor, and an actuator.
    The alloy is used in both sports cameras that have auto-focus and mobile phones as an optical image stabilizer.
    Pneumatic valves can be fitted with alloys for a more comfortable seat. This has been a industry standard.
    The alloy Chevrolet Corvette has a nickel/titanium memory-alloy actuator that replaces an electronic transmission. It opens and closes hatches to release air from the body, making it easier to access.
    The main supplier of Nickel Titanium Alloys Powder
    Tech Co., Ltd. () is a professional Metal Alloy Over 12 years' experience in chemical product development and research. We accept credit cards, T/T and West Union payments. We will ship goods overseas via FedEx, DHL and by air or sea to our customers.
    You can find high-quality powdered boron carbide here Please contact us Send an inquiry

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    What is Boron Carbide Powder B4C?

    Boron Carbide Powder Boron caride powder It is shiny, hard, and black. It is harder than silicon carbide, but less hard than industrial diamond. Boron carbide is more fragile than most pottery. It has a strong chemical resistance and a large cross-section for thermal neutron capture. It is unaffected by hot hydrogen fluoride, nitric acid and other acids. It is soluble and insoluble when it comes into contact with molten alkali. Its relative density (D204), ranges from 2.508 to 2.512. The melting point is 2350. The boiling point of water is 3500

    Boron Carbide powder's physical and chemical properties
    Boron carbide It does not react with acid or alkali solutions and has high potential chemically. It is capable of neutron absorption, wear resistance, and semiconductor conductivity. It is one of most stable compounds to acids. It is stable in all concentrated, dilute acid and alkaline water solutions. Boron carbide remains stable in air temperatures below 800F.
    Some transition metals and their carbide coexist to create special stability. The metal borides are formed when the transition metals iv to v in the periodic table react strongly at 1000 1100 with boron carbide. It has been reported that boron carbide reacts with transition metal oxides at higher temperatures to form corresponding forms of boron nutride and borides. These borides are mostly rare earth and alkaline-earth metal hexaborides.
    It is approximately 9.5 Mohs Hardness, making it the third hardest known substance after diamonds and cubic boron Nitride. Silicon carbide is even harder.
    Because of the way it is prepared, boron carbonide is very easy to form carbon defect. This can result in a wide variety of boron/carbon ratio changes that do not affect the crystal structure. This can often lead to the loss of its physical and chemical characteristics. These defects can't be solved by powder diffraction and require energy loss spectrum and chemical titration.
    Boron Carbide Powder Properties
    Other Names B4C and B4C powder, black Diamond, boron carbide, powder
    CAS No. 12069-32-8
    Formula compound B4C
    Molecular Weight 55.26
    Appearance gray black powder
    Melting Point 2763degC
    Boiling Point 3500degC
    Density 2.52g/cm3
    Solubility of H2O Insoluble
    Exact Mass N/A
    Boron Carbide B4C Powder Cas 12069-32-8

    Boron Carbide Powder
    Boron carbonide is ideal for hard materials such as ceramic wear parts like wear plate, pump and bearing parts, faucet, nozzle, valve, parts engineering ceramics and light body armor materials. Specifically,
    1. Useful for controlling nuclear fission. Boron carbide absorbs large amounts of neutrons in a non-radioactive manner, making it a great neutron absorber for nuclear power plants.
    2. As abrasive materials. Boron carbide has been used for many years as a coarse abrasive. Boron carbide is hard to mold into artifacts due to its high melting point. However, if it is melted at high temperatures it can be made into simple shapes. This is useful for grinding, drilling, polishing, and sandblasting of precious stones and hard alloys.
    3. For coating coatings. Boron carbide is also a suitable ceramic coating for warships, and helicopters. It is light and resistant to armor-piercing bullets.
    4. It is used to make the nozzle. It is used in the manufacture of gun nozzles. Boron carbide is very hard and wear-resistant. It does not react to acid or alkali. The boron nitride sandblasting tool nozzle is gradually replacing the carbide/tungsten steel, silicon carbide, silicon trioxide and alumina sandblasting tools.
    5. Others. Boron carbide is also used for the production of metal borides as well as the smelting and alloying of sodium boron and boron alloys and special welding.

    Main Boron Carbide Powder Supplier
    Technology Co. Ltd. is a trusted global supplier of chemical materials and manufacturer with more than 12-years experience in providing super high quality chemicals and Nanomaterials. This includes boron carbide, nitride, graphite, zinc sulfide, calcium nitride and 3D printing powder.
    Send us an inquiry if you're looking for high-quality boron carbide powder.

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