At Annat Frictions, our Motorcycle Brake Pads Metallic Formula is engineered for uncompromising performance, powered by high-grade Brake Pads Friction Materials and a precisely tuned Brake Pads Mixture. This advanced Brake Pads Formula is tailored to motorcycle dynamics, delivering the robust stopping power and durability demanded by both casual riders and performance enthusiasts across diverse riding scenarios.

Motorcycle Brake Pads Metallic Formula

Motorcycle Brake Pads Metallic Formula

The core of this technology lies in our proprietary Brake Pads Mixes: a strategic blend of 38-45% by weight high-strength metallic fibers (including low-carbon steel and copper alloys), heat-stable organic binders, and friction modifiers. These brake pads friction materials boast an impressive friction coefficient of 0.47-0.53 μ, maintaining consistent braking force across a wide temperature range of -35°C to 550°C—eliminating fade even during prolonged, high-intensity use. With thermal conductivity of 24 W/m·K, the brake pads mixture enables rapid heat dissipation, reducing rotor temperature buildup by 30% compared to non-metallic alternatives.

Brake Linings Rock Wool

Brake Linings Rock Wool

Key advantages of our Metallic Formula include exceptional durability: a wear rate of just 0.05 mm/1000 km translates to a service life of up to 35,000 km under normal riding conditions. The brake pads formula also delivers 28% faster stopping distances than organic pads (tested at 80 km/h) and exhibits strong resistance to impact and deformation, making it ideal for heavy-duty or off-road riding. Additionally, it operates at a low noise level (below 60 dB at 75 km/h) and meets global safety standards for brake performance.

Brake Linings Rock Wool

Brake Linings Rock Wool

Every batch undergoes rigorous dynamometer testing and real-world road simulations to validate the brake pads mixes’ reliability. For Annat Frictions, this metallic brake pads formula isn’t just about performance—it’s a commitment to rider safety, combining cutting-edge materials science with practical functionality.

 

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