Carbon-Ceramic Composite
Carbon-Ceramic Composite
Carbon-Ceramic Composite
Carbon-Ceramic Composite

Carbon-Ceramic Composite

  • element:Carbon (C), Ceramic Materials (Aluminum Oxide, Silicon Nitride, etc.)
  • purity:High-purity carbon-ceramic composite materials
  • shape:Customizable shapes based on requirements, commonly in sheets, tubes, and discs
  • specification:Customizable sizes based on specific application needs
  • packaging:Custom packaging available based on customer requirements

Carbon-Ceramic Composite is an advanced material combining carbon fiber reinforcement with ceramic matrices, offering exceptional thermal stability (2000°C+), high strength-to-weight ratio, and superior wear resistance for extreme environments.

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Product Overview

Carbon-ceramic composites combine carbon materials with ceramic components, offering excellent thermal stability, corrosion resistance, and mechanical properties. Their unique structure ensures that they maintain stable performance even in high temperatures, high pressures, and harsh environments. These composites are widely used in aerospace, metallurgy, machinery, energy, and other industries, particularly where high-temperature, corrosion-resistance, and high-strength performance are critical.

Features

  • High Strength: Carbon-ceramic composites exhibit exceptional compressive strength and impact resistance, even in high-temperature and high-pressure environments.
  • Excellent High-Temperature Performance: Capable of maintaining stable performance at extremely high temperatures, making them ideal for high-temperature applications.
  • Good Corrosion Resistance: They offer excellent resistance to a variety of acids, alkalis, and organic solvents, making them suitable for harsh environments.
  • Low Thermal Expansion: These materials have a low thermal expansion coefficient, allowing them to maintain their shape in environments with significant temperature fluctuations.
  • Good Thermal Conductivity: With excellent thermal conductivity, these composites facilitate efficient heat dissipation and thermal management in high-temperature conditions.
  • Lightweight: Lighter than traditional ceramics, which reduces overall system weight, making them particularly suitable for aerospace applications.
  • Strong Wear Resistance: Carbon-ceramic composites are highly wear-resistant, ideal for use in high-wear environments.
  • Excellent Electrical Properties: In certain applications, they exhibit good electrical insulation, making them suitable for electronic component packaging and electrical applications.

Applications

  • Aerospace: Used in aerospace components as high-temperature, corrosion-resistant, and wear-resistant materials, particularly in engine parts, thermal protection systems, etc.
  • Mechanical Manufacturing: Applied as high-strength, wear-resistant components in pumps, bearings, seals, and other mechanical systems.
  • Energy Industry: Widely used in energy equipment, especially in high-temperature and corrosion-resistant environments such as gas-cooled reactors and nuclear power stations.
  • Metallurgical Industry: Used in high-temperature, corrosion-resistant tools and equipment in metallurgy, including furnace materials and smelting equipment.
  • Automotive Industry: Applied in high-performance automotive brake systems, engine components, etc., to improve durability and safety.
  • Electronics Industry: Used in electronic components and heat dissipation systems that operate in high-temperature and high-pressure environments.
  • Chemical Industry: Applied in chemical reaction equipment, such as corrosion- and high-temperature-resistant pipes, reactors, and seals.
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