Introduction to Car Brake Pads with Carbon Metallic Formula
Carbon metallic brake pads are engineered using a proprietary Brake Pads Formula that combines carbon fibers and precision-balanced metal alloys. This advanced Brake Pads Mixture optimizes friction stability and thermal resilience, making it ideal for high-performance vehicles and heavy-duty applications.
Technical Specifications
| Parameter | Value/Description |
|---|---|
| Friction Coefficient | 0.42–0.50 (μ) |
| Operating Temperature | -50°C to 800°C |
| Compressive Strength | ≥95 MPa |
| Density | 2.3–2.6 g/cm³ |
| Hardness (Rockwell) | 88–92 HRB |
| Certifications | SAE J661, ECE R90, ISO 26865 |
Advantages of Carbon Metallic Formula
- Superior Heat Management
- The Brake Pads Friction Materials incorporate carbon fibers (15–20%) and copper-coated steel wool (10–12%), enabling stable performance at extreme temperatures (up to 800°C) with <5% fade rate.
- Enhanced Durability
- Reduced rotor wear: 30% lower abrasion compared to semi-metallic formulas due to optimized Brake Pads Mixes of graphite lubricants and hexagonal boron nitride (hBN).
- Quiet Operation
- Noise dampening layers with aramid fibers (5–8%) suppress high-frequency vibrations, achieving <65 dB during emergency braking.
- Eco-Compliance
- Meets EU Regulation No 305/2011, containing <0.1% asbestos and heavy metals.
Storage & Packaging Guidelines
- Packaging:
- Individually wrapped in anti-corrosion VCI (Volatile Corrosion Inhibitor) paper.
- Stacked in reinforced cartons with “↑ THIS SIDE UP” labels to prevent edge chipping.
- Storage:
- Temperature: -10°C–35°C in low-humidity environments (relative humidity <55%).
- Maximum shelf life: 24 months from production date.
Core Formula Components
The brake pads formula comprises:
- Friction Matrix: Carbon fibers (18%), steel wool (12%), iron oxide (25%)
- Lubricants: Graphite (10%), hBN (3%)
- Binders: Modified phenolic resin (15%)
This balanced brake pads mixture delivers exceptional stopping power for sports cars, SUVs, and commercial vehicles while minimizing brake dust generation.

