At Annat Frictions, our car brake shoes carbon fiber formula redefines braking performance by engineering a precise synergy between high-grade carbon fiber and advanced friction components. Unlike conventional options, our formula doesn’t just rely on single-material strength—it optimizes the Brake Pads Mixture to balance three core functions: consistent friction, heat resistance, and wear durability, ensuring every stop is both powerful and reliable.
Table of Contents
Car Brake Shoes Carbon Fiber Formula
So, how does it work? When the brake shoe presses against the drum, our Brake Pads Friction Materials—reinforced with 18-22% high-modulus carbon fiber—create a stable friction interface. Carbon fiber’s inherent thermal conductivity (up to 150 W/m·K) rapidly dissipates heat, preventing “brake fade” even under extreme conditions: in tests, our formula maintains 90% of its friction coefficient (0.42-0.48 μ) at temperatures up to 650°C, while standard formulas drop to 0.30 μ or lower. This stability comes from our proprietary Brake Pads Mixes, where carbon fiber is blended with modified resin binders and mineral fillers to avoid hardening or cracking—extending brake shoe lifespan by 40% compared to non-carbon formulas.
Truck Brake Linings Copper Free Formula
What sets our Brake Pads Formula apart is precision engineering. We control carbon fiber length (3-5mm) to avoid fiber detachment, and adjust filler ratios to reduce noise: our formula produces just 58-62 dB during braking, well below the industry average of 70+ dB. Every batch undergoes torque testing (maintaining 2,200-2,500 N·m of braking torque under 800N pressure) and wear rate analysis (≤0.03 mm/1,000 cycles), ensuring consistent performance across every product.
Truck Brake Linings HD (high Denisty) Ceramic Formula
For Annat Frictions, this formula isn’t just about materials—it’s about delivering safety you can measure. Whether for passenger cars or light commercial vehicles, our carbon fiber-infused brake shoes turn every press of the pedal into a testament to durability, efficiency, and trust.






