Spherical Titanium Carbide Powder (TiC)
Spherical Titanium Carbide Powder (TiC)
Spherical Titanium Carbide Powder (TiC)
Spherical Titanium Carbide Powder (TiC)

Spherical Titanium Carbide Powder (TiC)

  • element:Titanium (Ti), Carbon (C)
  • purity:99.5%
  • shape:Spherical powder
  • specification:Particle size ranges from 75-45 μm, 53-15 μm, 45-15 μm, custom processing available
  • packaging:Customizable

Spherical titanium carbide (TiC) powder is a high-performance ceramic material known for its exceptional hardness, wear resistance, and thermal stability. It is widely used in cutting tools, wear-resistant coatings, powder metallurgy, and advanced composites. The uniform spherical morphology enhances sintering behavior, making it ideal for high-strength applications in aerospace, electronics, and industrial manufacturing.

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Product Overview
Spherical titanium carbide (TiC) is a compound made of titanium and carbon, produced using radio-frequency plasma spheroidization method. It features a high spheroidization rate and a dense structure. With excellent physical and chemical properties, it is a high-performance material, especially suitable for advanced industrial applications. The spherical TiC powder offers extremely high hardness, excellent thermal conductivity, and outstanding chemical stability, making it suitable for various processing methods and end applications.

Product Features

  • High Hardness:Mohs hardness of 9-10, providing excellent wear resistance.
  • Good Thermal Conductivity:Thermal conductivity of 21 W/(M·K), ensuring stability under high-temperature conditions.
  • Superior Chemical Inertness:Exhibits excellent chemical inertness and electrical conductivity, particularly in steel.
  • High-Temperature Stability:Melting point of up to 3140°C, meeting the demands of high-temperature processing.
  • Customizable Particle Size:Available in various particle sizes to suit different application fields.

Applications

  • Hardfacing Materials:Widely used in the production and manufacturing of high-hardness, wear-resistant materials.
  • 3D Printing:Suitable for additive manufacturing technologies, meeting the demands for high-performance material printing.
  • Plasma Spraying:Used as a coating material to provide additional corrosion and wear resistance.
  • Laser Cladding:Used in surface enhancement technologies to improve material strength and durability.
  • Superhard Composites:Used in the manufacture of superhard composite materials, widely applied in cutting tools and molds.
PropertyValue
Particle Size75-45 µm, 53-15 µm, 45-15 µm, or customizable
Flow Rate16 g/50 S
Titanium Carbide Content>99.5%
Hazardous ChemicalNo
Density (g/cm³, 25℃)4.93
Melting Point (℃)3140
Boiling Point (℃, 1 atm)4820
SolubilitySoluble in nitric acid, insoluble in water
Mohs Hardness9 ~ 10
Thermal Expansion Coefficient (K)7.74×10⁻⁶
Thermal Conductivity (W/(m·K))21
Enthalpy of Formation (kJ/mol)-183.4
Elastic Modulus (GPa)400
DescriptionExhibits excellent electrical conductivity and chemical inertness to steel.
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Spherical Titanium Carbide Powder (TiC)Spherical Titanium Carbide Powder (TiC)

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