High-Oriented, Ultra-High Thermal Conductivity Carbon/Carbon Composite Materials
High-Oriented, Ultra-High Thermal Conductivity Carbon/Carbon Composite Materials
High-Oriented, Ultra-High Thermal Conductivity Carbon/Carbon Composite Materials
High-Oriented, Ultra-High Thermal Conductivity Carbon/Carbon Composite Materials

High-Oriented, Ultra-High Thermal Conductivity Carbon/Carbon Composite Materials

  • element:Carbon
  • purity:High purity
  • shape:Solid
  • specification:Volume density ≥1.85 g/cm³ Unidirectional thermal conductivity >810 W/m.K
  • packaging:Standard packaging

High-oriented, ultra-high thermal conductivity carbon/carbon composite materials are advanced structural components engineered for applications demanding exceptional heat dissipation, mechanical strength, and chemical stability. These materials are produced using high-purity carbon fiber reinforcements in a carbon matrix, providing optimized thermal management, minimal thermal expansion, and superior oxidation resistance. They are widely used in aerospace engineering, semiconductor processing, thermal interface applications, and high-performance energy systems, ensuring reliable efficiency in extreme environments.

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Product Overview
High-Oriented, Ultra-High Thermal Conductivity Carbon/Carbon Composite Materials are advanced carbon-based composite materials specifically designed for cutting-edge applications. With a unidirectional thermal conductivity exceeding 810 W/m.K, this material effectively conducts heat, solving thermal management challenges in high-power density devices and high-end electronic equipment. The material offers exceptional mechanical properties with tensile strength of 180 MPa and flexural strength of 150 MPa, ensuring reliability and durability in demanding conditions. It is widely used in aerospace, nuclear energy, and military sectors, ideal for thermal management in high-power electronic devices, communication components, and new energy equipment.

Key Features

  • Extreme Thermal Conductivity (>810 W/m.K): Meets the high-performance thermal management demands of advanced applications.
  • Superior Mechanical Properties: Tensile strength of 180 MPa and flexural strength of 150 MPa.
  • High Volume Density (≥1.85 g/cm³): Enhances material stability and durability.
  • High Purity and Oriented Structure: Ensures consistent performance and efficient heat transfer.

Applications

  • Aerospace, Aviation, and Nuclear Energy: High-performance candidate material for advanced technologies.
  • Thermal Management in High-Power Density Devices: Suitable for high-end electronic devices, communication components, and new energy equipment.
  • Energy and Military Applications: Ideal for applications requiring high thermal conductivity.

 

ItemValue
Density≥1.85 g/cm³
Thermal Conductivity (Unidirectional)>810 W/m·K
Tensile Strength180 MPa
Bending Strength150 MPa
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