Car Brake Shoes Carbon Ceramic Formula

Introduction to Car Brake Shoes with Carbon Ceramic Formula

Carbon ceramic brake shoes employ a cutting-edge Brake Shoes Formula combining high-performance Brake Shoes Friction Materials for exceptional thermal stability and durability. This advanced Brake Shoes Mixture integrates carbon fibers and ceramic matrices, optimized for high-speed and heavy-duty applications.


Technical Specifications

ParameterValue/Description
Friction Coefficient0.42–0.50 (μ)
Operating Temperature-50°C to 1,200°C
Density1.8–2.2 g/cm³
Compressive Strength≥120 MPa
CertificationsSAE J2522, ECE R90, ISO 26865
Service Life80,000–120,000 km (passenger vehicles)

Advantages of Carbon Ceramic Brake Shoes

  1. Extreme Heat Resistance
    • The Brake Shoes Mixes of carbon fibers (20–25%) and silicon carbide ceramics (60–70%) ensure stable friction performance even at 1,200°C, reducing brake fade by 90% compared to metallic formulations.
  2. Weight Reduction & Fuel Efficiency
    • 50% lighter than traditional cast iron brakes, lowering unsprung mass and improving fuel economy by 3–5%.
  3. Low Wear & Corrosion Resistance
    • Ceramic-enriched brake shoes friction materials reduce rotor wear by 40% and resist salt corrosion, ideal for coastal regions.
  4. Environmentally Friendly
    • Asbestos-free and low-copper (<0.5%) composition compliant with EU Regulation EC/1907/2006 (REACH).

Storage & Packaging Guidelines

  • Packaging:
    • Individually wrapped in anti-static, moisture-proof bags with desiccants.
    • Outer cartons labeled with temperature-sensitive color indicators (storage range: -10°C to 35°C).
  • Storage:
    • Stack vertically (max 8 layers) on pallets in dry, dust-free environments.
    • Avoid direct sunlight to prevent resin degradation.

Key Formula Components

The brake shoes formula comprises:

  • Friction Matrix: Silicon carbide (65–70%), carbon fibers (20–25%)
  • Binders: Phenolic resin modified with ceramic nanoparticles (8–10%)
  • Additives: Graphite (5–7%) for lubrication, zirconia (2–3%) for thermal stability.

This brake shoes mixture delivers superior stopping power for luxury cars, racing vehicles, and commercial trucks, combining lightweight design with uncompromised safety.