BRAKE DISC

The rotational motion of the wheel imparts movement to the brake disc. Upon depression of the brake pedal, a piston within the brake caliper exerts pressure on the brake pads, facilitating frictional contact with the disc, resulting in deceleration of both the disc and the vehicle.

The braking action engenders a notable generation of heat, and sustained or forceful braking can elevate the temperature of the brake discs to levels detrimental to their efficacy, leading to performance degradation, commonly known as fading.

Consequently, Miles brake discs of premium caliber are meticulously engineered to efficiently dissipate heat, with a targeted focus on optimal thermal management. The manufacturing process is characterized by stringent adherence to precise specifications encompassing weight, mass, density, and the utilization of materials distinguished by a high carbon composition.

From Raw Materials to Precision Products

Miles brake discs are manufactured to the highest standards using a grey iron smelting process combining new/recycled materials and metal composites. The result is a brake disc with high thermal efficiency and optimal damping properties, thus preventing vibrations and annoying noise.

Fully compatible with the original braking systems of modern cars, with active safety systems and have an excellent balance between performance indicators and braking comfort under normal operating conditions as at both high and low loads.

Replacing standard worn brake discs with MILES discs allows you to ensure reliability and maintain the characteristics that manufacturers include in the design of cars.

Provides indicators of braking efficiency and vehicle stability during braking.

Meets all the requirements for mechanical and thermal load: abrasion, heat resistance, resistance to deformation during repeated heating and cooling.

Characteristics
  • Effective braking dynamics;
  • Controlled braking and high brake sensitivity;
  • No beats or vibrations during braking of varying intensity;
  • Excellent absorption and dispersion of thermal energy;
  • High resistance to thermal cracking and deformations;
  • Temperature transfer doesn’t influence bearings and remains a perfect fit;
  • High manufacturing precision.

9-stage specialised anti-corrosion coating process

1.

Pre-degreasing

2.

1st Ultrasonic degreasing

3.

2nd Ultrasonic degreasing

4.

1st Water wash

5.

2nd Water wash

6.

Appearance checking

7.

Baking

8.

Coating

9.

Drying
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