Brake disc FERODO DDF3047C 260x8mm, 4x100, 13,8, solid

Article №: DDF3047C

Brake disc FERODO DDF3047C

Details
  • Diameter: 260
  • Brake Disc Type: solid
  • Number of Holes: 4
  • Bolt Hole Circle Ø [mm]: 100, 13,8
  • Brake Disc Thickness: 8
  • Minimum thickness [mm]: 7
  • Centering Diameter [mm]: 61
  • Height: 40
  • Weight [kg]: 6,45
  • Surface: Coated
  • Number of mounting bores: 2
  • Supplementary Article / Supplementary Info Info 2: without bolts/screws
  • Packing Type: Box
  • Packaging length [cm]: 29
  • Packaging width [cm]: 29
  • Packaging height [cm]: 9,5
  • Condition: New
Brake rotor 260x8mm, 4x100, 13,8, solid (FERODO DDF3047C)
Suitable for RENAULT
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£30.99
incl. 20% VAT, excl. delivery costs
Not in stock
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Suitable for these vehicles

FERODO DDF3047C Brake disc – Key Features & Performance

The FERODO DDF3047C Brake disc provides consistent geometric stability and high-grade metallurgical integrity for modern vehicle braking systems. By ensuring minimal lateral run-out and optimal structural density, this component facilitates reliable stopping force across varied road conditions. Mechanics will find that the FERODO DDF3047C Brake disc integrates seamlessly with existing hub assemblies to maintain factory-level safety standards.


Advanced heat resistance for demanding conditions

Precision manufacturing ensures these units exhibit reliable thermal stability during extended use. Operators benefit from high temperature resistance when navigating steep gradients or stop-start traffic. These fade-resistant materials prevent pedal softness under heavy load cycles. The DDF3047C FERODO Brake discs effectively handles high heat without losing structural rigidity. By remaining heat resistant, the component maintains consistent friction contact throughout the working life of the part.


Controlled low vibration for driver comfort

Engineers have balanced these components to ensure there is no vibration during high-speed deceleration. The design promotes smooth rotation that minimizes unnecessary mechanical feedback. Customers report no steering wheel wobble when the braking system is applied under pressure. This anti-judder construction preserves the integrity of surrounding wheel bearings and suspension components. FERODO DDF3047C provides the consistency required for refined automotive handling.


Consistent braking performance under pressure

The internal composition of these units ensures high braking performance for diverse driving styles. Drivers can rely on high friction performance to navigate hazardous conditions with precision. This setup provides a strong braking force that responds immediately to pedal input. The FERODO DDF3047C Brake disc set delivers maximum stopping power by maintaining a uniform surface area. Furthermore, improved braking efficiency is achieved through strict tolerance control during the casting process.


Engineered warp resistance for long-term reliability

High-tensile casting techniques ensure the metal maintains shape under heat without internal stress migration. These components remain stable under stress, even when subject to rapid thermal cycling. Every unit is strictly warp-resistant to avoid permanent distortion during hard usage. By employing deformation-resistant techniques, the manufacturer ensures the rotor retains its flat profile. DDF3047C FERODO Rotors undergo rigorous bench testing to confirm this dimensional accuracy.


Rapid cooling efficiency through ventilation

Advanced cooling channels are integrated into the disc design to expedite temperature reduction. Each unit is fully ventilated to prevent the accumulation of excess thermal energy. Engineers prioritize fast heat dissipation to prevent pad glazing and premature component aging. Through improved cooling, the braking system manages heat distribution effectively across the entire rotor surface. This optimised airflow design is a hallmark of the FERODO DDF3047C Brake discs range.


Superior value for money for fleet maintenance

Professional workshops choose this component due to its clear price-to-quality ratio. It represents the best value for money for owners seeking reliability without unnecessary premiums. Technicians appreciate the high quality for a good price, which simplifies procurement for standard service intervals. The best price-performance balance is achieved through high-volume manufacturing processes. FERODO DDF3047C Disc brakes are ultimately cost-effective solutions for high-mileage drivers, providing good value over the total service lifecycle.


Durable construction with coated discs

Surface finishing ensures the metal remains coated against external elements throughout its initial storage and operational phase. A protective layer prevents oxidation from compromising the mounting hub or contact areas. This anti-rust coating simplifies the installation process by removing the need for heavy degreasing. The components are expertly painted to inhibit surface degradation in damp environments. FERODO DDF3047C Brake rotors protect the assembly from environmental decay.


Comprehensive corrosion resistance for longevity

The specialized anti-corrosion coating ensures the structural integrity of the cooling vanes remains intact. Effective rust protection prolongs the functional life of the disc in regions prone to salted roads. These zinc-coated surfaces prevent scale build-up that often causes uneven friction. A corrosion-resistant finish is essential for maintaining aesthetic and mechanical quality over time. DDF3047C FERODO units withstand harsh climate conditions without compromising structural density.


Refined material quality for modern metallurgy

Production focuses on a premium alloy that exceeds standard casting requirements. Improved metallurgy allows for better heat conduction across the disc face. Mechanics favor these high-grade materials for their consistent hardness and wear characteristics. The inclusion of high carbon content provides the necessary friction properties for modern passenger vehicles. FERODO DDF3047C components demonstrate engineering excellence in every detail.


FERODO DDF3047C Brake discs: Key Performance and Safety Highlights

This technical summary outlines the specific benefits provided by DDF3047C FERODO Rotors in real-world environments. The table below correlates critical mechanical attributes with the associated performance outcomes. These metrics are vital for selecting the correct braking components for specific operational requirements.


Braking Attribute Performance Benefit
Thermal stability fade-resistant materials
Judder-free operation no steering wheel wobble
Stopping power strong braking force
Geometric stability warp-resistant
Heat dissipation efficiency fast heat dissipation
Cost-effective efficiency high quality for a good price
Protective anti-corrosive coating anti-rust coating
Anti-corrosion protection rust protection
High-carbon cast iron alloy high-grade materials

The mechanical consistency of the FERODO DDF3047C ensures that drivers experience predictable deceleration. This hardware remains deformation-resistant even under sustained braking loads, maintaining a flat surface for optimal pad contact. By utilizing the FERODO DDF3047C Brake disc set, workshops reduce the frequency of return visits for premature component failure.


Why the FERODO DDF3047C Brake disc is an Excellent Choice

This product represents original equipment quality standard for aftermarket replacement. The metallurgy is optimized to ensure that rotor wear is predictable and even. Fleet managers recognize this as a prudent investment for cost-per-mile efficiency. Maintaining strict thickness specifications throughout the lifecycle is a core benefit of this design.


Choosing FERODO DDF3047C guarantees that the braking system operates within optimal safety parameters. Every FERODO DDF3047C Brake disc set undergoes rigorous balance testing to ensure a vibration-free pedal feel. Professionals recommend this component for its balance of longevity and stopping precision. Contact your local technical distributor to procure the FERODO DDF3047C for your upcoming service schedule.


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