Introduction to Car brake pads Carbon Fiber Mixture
Carbon fiber brake pads represent a cutting-edge advancement in automotive brake pads friction material, combining lightweight properties with exceptional durability and thermal stability. Engineered using high-performance brake pads mixes of carbon fibers, ceramic compounds, and resin binders, this brake pads formula delivers unparalleled braking efficiency while minimizing environmental impact.
Technical Parameters
The table below outlines key specifications of a carbon fiber-based brake pads mixture:
Parameter | Value/Range |
---|---|
Density | 1.8–2.0 g/cm³ |
Friction Coefficient (μ) | 0.35–0.45 (dry/wet conditions) |
Wear Rate | ≤0.1 mm³/(N·m) |
Operating Temperature Range | -40°C to 650°C (peak: 2500°C*) |
Noise Level | <65 dB (tested at 50 km/h) |
Packaging Specification | 8 pairs/box, vacuum-sealed bags |
*Note: Carbon fiber retains structural integrity up to 2500°C under extreme conditions .
Key Advantages
- Lightweight Design
- With a density of 1.8–2.0 g/cm³ (vs. 2.5 g/cm³ for steel fibers), carbon fiber brake pads mixtures reduce vehicle weight by 30–40%, enhancing fuel efficiency and handling .
- Superior Wear Resistance
- Carbon fiber composites exhibit 10x lower wear rates compared to steel-based pads, extending service life and reducing rotor damage .
- Noise and Vibration Reduction
- The high damping capacity of carbon fiber (loss factor: 0.024±0.008) eliminates brake squeal and ensures silent operation .
- Extreme Thermal Resilience
- Stable friction coefficients are maintained even at 650°C, with no thermal fading or outgassing. The material withstands transient spikes up to 2500°C, ideal for high-performance vehicles .
- Eco-Friendly Composition
- Asbestos-free and heavy-metal-free, this brake pads formula complies with global environmental standards (e.g., EU RoHS) and produces minimal toxic dust .
Storage and Packaging
- Storage Guidelines:
- Store in dry, temperature-controlled environments (10°C–35°C) to prevent resin degradation .
- Avoid humidity >60% and direct sunlight to preserve adhesive strength.
- Packaging:
- Individually wrapped in anti-static, moisture-proof bags with desiccants .
- Reinforced cardboard boxes with shock-absorbing foam inserts ensure damage-free transportation.
Applications
Ideal for luxury vehicles, racing cars, and electric vehicles requiring high thermal management and lightweight solutions. The carbon fiber brake pads mixture is compatible with most disc brake systems, offering a perfect balance of performance, longevity, and sustainability.
By integrating advanced brake pads friction materials and rigorous quality control, this carbon fiber formula redefines modern braking technology, prioritizing safety, efficiency, and environmental responsibility