High Purity Zirconium Carbide Nannoparticles Nano ZrC Powder CAS 12070-14-3, 99% |

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Zirconium carbide nanoparticles possess a high level of hardness. They are also excellent at high temperature refractory. It is used to make solid propellants for rocket engines. Purity: 99%
Particle Size : 20nm
The following is a list of the most recent articles about Nano ZrC Nanoparticles :
Zirconium carbide This material is high-temperature resistant, hard and has a melting point of 900°C. Its chemical formulation is ZrC . Zirconium carbide powder It has a very high melting point, and it is also extremely hard. Chemical stability is low. Water does not react with it. Acid soluble. Zirconium carbide This dark gray cubic crystal has a metallic luster. It’s crisp. The melting point is 3540. The boiling point is 5100. Apparent density is 670 g/cm3. Mohs hardness is 8 to 9. Insoluble in cold water, hydrochloric or hydrofluoric acids. Zirconium carbide At high temperatures, it reacts with chlorine to form zirconium chloride. It burns at 700 degrees in the air, forming zirconia. It does not react when it comes into contact with water.

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Product Performance of Zirconium Carbide Nanoparticles Nano ZrC:
Zirconium carbide nanoparticles have high purity and a small particle size. They also have uniform distribution, a large surface area, a high surface activity as well as low bulk density. Nano ZrC Powder is a corrosion resistant, high strength structural material that has a high melting temperature. It also exhibits high hardness and good toughness.

Technical Parameter of Zirconium carbide nanoparticles and Nano ZrC powder
Product Name MF Purity Particle Size Crystal Form SSA Color
Zirconium Carbide Nanopartiles ZrC 99% 20nm Cubic 11m2/g Black
What is Nano ZrC Nanoparticles Produced?
Zirconium Carbide can be made by heating coke and zirconia in an electric oven. Carbon reduction in electric arc furnace using zirconium sand, zirconium carbide.
Zirconium carburide was produced by chemical vapor evaporation of zirconium-tetrachloride in a hydrogen atmosphere between 900 and 1400.

Applications Nano ZrC Nanoparticles :
Zirconium carbide (ZrC) This material is used to make cutting tools. Zirconium carbide The main use of this material is as an abrasive. However, it can also be used to make cemented carbide.
Zirconium carbide Is often used as an ingredient in solid propellants for rocket engines. In the production of alloyed steel. Also, it is a raw material used to produce zirconium or zirconium chloride as well as fine ceramic materials.
Zirconium carbide Hardness is its main characteristic. Therefore, it’s suitable for use as drills or other wear-resistant instruments.
Nano-zirconium carbide The nanostructures can be applied to metallurgy as well as the chemical industry, aviation, and many other fields.
Textile industry: Used in the production of thermoplastic nylon, fiber, and carbide textiles.
The nanoparticles also serve as a component in composites that are used for metal and ceramic substrates.
Zirconium carbide It was once used to make filaments that burned. It’s mainly used now as abrasive. ZrC powder Can also be used as a raw material for cemented carbide.

Zirconium Carbide Nanoparticles Nano ZrC Poudre:
There are different types of packaging depending on the quantity of zirconium carbide nanoparticles.
Zirconium carbide nanoparticles packing: As per your request, vacuum packaging is available in 1kg/bags, 25kg/barrels, or both.
Shipment of zirconium carbide nanoparticles Once payment has been received, goods can be shipped by air, sea or express.


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Zirconium Carbide Properties

Alternative Names zirconium(IV) carbide, methylidynezirconium, ZrC powder
CAS Number 12070-14-3
Compound Formula ZrC
Molecular Mass 103.23
Appearance Gray Powder
Melting Point 3532
Boiling Point 5100
Density 6.73 g/cm3
Solubility In H2O N/A
Exact Mass 102.912529

Zirconium Carbide Health & Safety Information

Sign Word Danger
Hazard Statements H228-H302-H312-H332
Hazard Codes F, Xn
Risk Codes 11-20/21/22
Safety Declarations 16-27-33-36/37/39
Transport Information UN 3178 4.1/PG 2,
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