The Motorcycle Brake Pads Carbon Metallic Formula is a high – performance formulation specifically designed for motorcycle braking systems.
I. Formula Composition (Brake Pads Carbon Metallic Formulation)
This formula is a precise mixture (Brake Pads Carbon Metallic Mixture) composed of various special materials. Carbon, as a key component, endows the brake pads with excellent high – temperature resistance. Metal components enhance the strength and wear resistance of the brake pads. Common metals include copper, iron, and some alloy materials. In addition, a variety of special chemical substances (Brake Pads Carbon Metallic Chemicals) are added. These chemicals play important roles such as lubrication and stabilizing the friction coefficient during the braking process, ensuring the stable operation of the brake pads under various working conditions.
II. Advantages
- Superior Braking Performance: Due to the synergistic effect of carbon and metal, brake pads with this formula can generate strong braking force in a short time, effectively shortening the braking distance. Whether at high – speed driving or in emergency braking situations, it can provide reliable braking protection for riders.
- Outstanding High – Temperature Resistance: The high melting point of carbon enables the brake pads to maintain stable performance in high – temperature environments. When braking frequently or at high speed, the brake pads generate a large amount of heat due to friction. However, the brake pads with this formula can withstand high temperatures and are less likely to experience thermal fade, ensuring the stability of braking performance.
- Long Service Life: The metal components enhance the wear resistance of the brake pads, reducing the wear rate and thus extending the service life of the brake pads. Compared with traditional brake pads, the use of carbon – metallic formula brake pads can reduce the replacement frequency and lower the use cost.
- Stable Friction Coefficient: The addition of special chemicals enables the friction coefficient of the brake pads to remain relatively stable under different temperature and humidity conditions. This means that riders can obtain a more consistent braking feel when braking, improving the safety and comfort of riding.
III. Technical Parameters
- Friction Coefficient: At normal temperature, the friction coefficient remains between 0.45 – 0.55; in a high – temperature (300℃ – 500℃) environment, the friction coefficient can still be stable at 0.35 – 0.45, ensuring the reliability of braking performance at different temperatures.
- Wear Rate: After strict testing, under standard working conditions, the wear amount per 1000 kilometers does not exceed 0.5mm, reflecting its good wear resistance.
- Compressive Strength: It can withstand a pressure of up to 50MPa, ensuring that the brake pads will not deform or be damaged during high – intensity braking.


