Brake disc BREMBO 08.9460.71 Prime 264x10mm, 4, solid, Perforated

Article №: 08.9460.71

Brake disc BREMBO 08.9460.71

Details
  • Product line: Prime
  • Diameter: 264
  • Brake Disc Type: solid, Perforated
  • Number of Holes: 4
  • Brake Disc Thickness: 10
  • Minimum thickness [mm]: 8
  • Centering Diameter [mm]: 60
  • Height: 41
  • Surface: Coated
  • Tightening Torque [Nm]: 98
  • Supplementary Article / Supplementary Info Info 2: with bolts/screws
  • Drilled: yes
  • Condition: New
Brake rotor 264x10mm, 4, solid, Perforated (BREMBO 08.9460.71)
Suitable for ABARTH
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£40.99
incl. 20% VAT, excl. delivery costs
items available: 36
OE Numbers
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Suitable for these vehicles

BREMBO 08.9460.71 Brake disc – Key Features & Performance

The BREMBO 08.9460.71 Brake disc provides a foundation for predictable vehicle retardation through its precise metallurgical composition and stable thermal management. By focusing on consistent lateral run-out tolerances and high-carbon alloy integrity, the unit ensures reduced disc thickness variation under repeated load cycles. Professional installers will find that this component maintains dimensional stability throughout its service life, critical for demanding road environments.


Top brands engineering for consistent vehicle maintenance

Selecting from reputable manufacturers ensures that the braking hardware meets rigorous industry standards for heavy traffic. These quality brands prioritize precise casting processes to maintain consistent friction surface finish. Well-known brands like this 08.9460.71 BREMBO Brake discs allow technicians to perform replacements with absolute confidence in part compatibility. Integration of best brake disc brands into a vehicle system provides a reliable baseline for long-term safety. Trusted brands ultimately dictate the maintenance intervals for modern braking systems.


Internally ventilated discs for thermal regulation

The optimised airflow design within the casting ensures rapid heat rejection during continuous operation. These internally ventilated units utilise an advanced geometry to circulate air between the friction surfaces. The ventilated structure actively prevents the accumulation of heat during intensive stop-start driving sequences. Sophisticated cooling vanes channel ambient air effectively to maintain structural integrity under load. This specific BREMBO 08.9460.71 Brake disc set demonstrates the necessity of airflow management for consistent stopping performance.


Exceptional durability for prolonged operational usage

Engineered for a long-lasting service cycle, the iron composition resists premature thinning. This extended lifespan allows for extended maintenance schedules, reducing the frequency of component removal. Being wear-resistant, the surface maintains its integrity even under abrasive debris conditions often found on motorway networks. High durability is a core requirement for modern high-performance vehicle components. BREMBO 08.9460.71 Rotors are categorized as heavy-duty hardware suitable for diverse operational requirements.


Corrosion resistance via advanced surface treatments

An anti-corrosion coating prevents the degradation of the friction surface during periods of vehicle inactivity. This rust protection is essential for maintaining a clean contact patch for the brake pads. Components that are corrosion-resistant benefit from a longer aesthetic and functional life in damp, saline conditions. The zinc-coated finish ensures that the mounting surfaces remain free from oxidation-induced seizure. Applying the BREMBO 08.9460.71 Brake discs prevents surface flaking that would otherwise impede hydraulic efficiency.


Thermal stability during high stress scenarios

High temperature resistance is achieved through a balanced iron-carbon mixture that prevents premature structural softening. These fade-resistant materials ensure the pedal feel remains consistent even during aggressive downhill descents. Maintaining thermal stability is critical for avoiding hydraulic fluid boil-over in extreme conditions. Components that are heat resistant allow for repetitive application without loss of surface friction. The BREMBO 08.9460.71 Disc brakes handle high heat loads through superior mass distribution.


Geometric stability and structural warp resistance

The design remains stable under stress, preventing the characteristic pedal pulsing associated with thermal deformation. A warp-resistant casting process ensures the disc maintains perfect parallelism between friction surfaces. Such deformation-resistant characteristics are vital for maintaining quiet and smooth braking at varying speeds. The material maintains shape under heat to ensure the pad contact surface area remains maximized at all times.


Premium class engineering for superior reliability

Utilizing top quality materials, this component aligns with the highest automotive manufacturing benchmarks. Consistent OE quality ensures that every unit fits precisely into original hub assemblies without modification. Achieving premium quality requires strict quality control measures throughout the manufacturing process. These professional grade parts are favoured by workshops looking to minimize warranty claims and maximize user satisfaction. Top-tier brands like BREMBO offer high-end solutions that satisfy the requirements of high-performance vehicle owners.


Braking performance and consistent friction modulation

Delivering maximum stopping power requires a friction surface that interfaces perfectly with modern pad compounds. A strong braking force is the result of consistent surface density across the entire sweep area. This component enables high braking performance by providing a stable coefficient of friction from the first mile of use. Improved braking efficiency is achieved through precise manufacturing tolerances and advanced surface finishing. High friction performance remains the hallmark of this BREMBO 08.9460.71 Brake rotors.


BREMBO 08.9460.71 Brake discs: Key Performance and Safety Highlights

Technical evaluation confirms that 08.9460.71 BREMBO Rotors provide a significant upgrade over standard replacement items. These components demonstrate exceptional uniformity, ensuring that hydraulic pressure is applied consistently across the pad surface. Precision machining reduces the likelihood of premature wear, providing a reliable and stable platform for daily transport.


Braking Attribute Performance Benefit
Brand positioning well-known brands
Internally vented design ventilated
Extended service life wear-resistant
Anti-corrosion protection corrosion-resistant
Thermal stability thermal stability
Geometric stability deformation-resistant
High-end quality segment premium quality
Stopping power improved braking efficiency

The operational longevity of the BREMBO 08.9460.71 Brake disc set ensures that cost-per-mile metrics remain favourable for fleet operators and private owners alike. Through the application of high durability, the interval between replacements is significantly increased. Using this hardware ensures that the vehicle maintains factory-specified stopping distances under varied road conditions.


Why the BREMBO 08.9460.71 Brake disc is an Excellent Choice

Maintaining OE quality standards is essential for ensuring that the braking system functions as the original manufacturer intended. By minimizing rotor wear through superior metallurgical density, these discs offer exceptional value over their operational life. Cost-per-mile analysis confirms that investing in premium components reduces total ownership expenditure. Professional mechanics prioritize these discs to ensure long-term customer satisfaction and safety.


This technical assessment concludes that the BREMBO 08.9460.71 represents a robust solution for vehicle maintenance. When integrating the BREMBO 08.9460.71 Brake disc set, ensure all mounting hubs are cleaned thoroughly to prevent axial run-out issues. Detailed technical specifications verify the suitability of this part for high-load applications. Please consult your vehicle handbook to verify the exact fitment before initiating the installation process.


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