Car Brake Pads Brass Free Formula

Introduction to Car Brake Pads with Brass-Free Formula

Brass-free brake pads are engineered using an innovative Brake Pads Formula that eliminates brass particles while maintaining high performance. This advanced Brake Pads Mixture combines eco-friendly Brake Pads Friction Materials to reduce environmental impact and enhance safety.


Technical Specifications

ParameterValue/Description
Friction Coefficient0.36–0.42 (μ)
Operating Temperature-30°C to 600°C
Compressive Strength≥80 MPa
Density2.0–2.3 g/cm³
CertificationsSAE J661, ECE R90, RoHS
Noise Level<68 dB at 80 km/h braking

Advantages of Brass-Free Formula

  1. Eco-Friendly Composition
    • The Brake Pads Mixes exclude brass and other heavy metals, reducing copper contamination in waterways and complying with Washington State Copper-Free Brake Law.
    • 100% asbestos-free and non-carcinogenic, meeting EU REACH regulations.
  2. Enhanced Durability
    • Utilizes ceramic fibers (20–25%) and aramid pulp (8–10%) in the brake pads friction materials, achieving 15% longer lifespan than conventional metallic pads.
  3. Low Dust & Noise
    • Proprietary brake pads formula with graphite (10–12%) and silica (6–8%) minimizes rotor wear and eliminates high-pitched squeal.
  4. Thermal Stability
    • Stable friction coefficient across -30°C to 600°C, preventing brake fade during aggressive driving.

Storage & Packaging Guidelines

  • Packaging:
    • Vacuum-sealed in moisture-resistant aluminum foil bags.
    • Cartons labeled with batch numbers and production dates.
  • Storage:
    • Temperature: 5°C–30°C in dry, ventilated areas.
    • Avoid direct sunlight; maximum stack height: 6 layers.

Key Components of the Formula

The brake pads mixture includes:

  • Friction Modifiers: Graphite (10–12%), boron nitride (3–5%)
  • Binders: Phenolic resin (12–15%)
  • Reinforcements: Ceramic fibers (20–25%), potassium titanate (5–8%)

This optimized brake pads formula ensures superior performance for hybrid/electric vehicles and urban driving conditions.