Brake disc BOSCH 0 986 479 248 330x31,9mmx130, Vented

Article №: 0 986 479 248

Brake disc BOSCH BD1113

Details
  • Diameter: 330
  • Brake Disc Type: Vented
  • Bolt Hole Circle Ø [mm]: 130
  • Brake Disc Thickness: 31,9
  • Minimum thickness [mm]: 30
  • Centering Diameter [mm]: 84,7
  • Height: 68,4
  • Surface: Coated
  • Machining: High-carbon
  • Paired product: 0 986 479 250
  • fulfils ECE norm: ECE-R90
  • Bore Diameter up to [mm]: 15,5
  • Drilled: no
  • Condition: New
Brake rotor 330x31,9mmx130, Vented (BOSCH BD1113)
Suitable for PORSCHE, VW
0.0 - reviews
£76.49
incl. 20% VAT, excl. delivery costs
items available: 13

BOSCH 0 986 479 248 Brake disc – Key Features & Performance

The BOSCH 0 986 479 248 Brake disc provides consistent stopping power through precision casting and superior thermal management. Engineered to mitigate lateral run-out and reduce thickness variation, this component ensures mechanical stability under repetitive stop-start cycles common on UK roads. The integration of high-carbon metallurgy facilitates rapid heat dissipation, effectively maintaining consistent clamping force during heavy-duty operation.


Advanced internally ventilated discs for thermal regulation

The implementation of cooling vanes within the rotor body supports effective temperature control. These ventilated components provide robust mechanical support for high-stress applications. An internally ventilated architecture ensures uniform expansion across the friction surface. Through an optimised airflow design, these discs prevent premature component failure during high-speed deceleration.


Proven heat resistance for demanding road conditions

Maintenance of friction integrity is achieved as this component remains heat resistant under extreme conditions. A BOSCH 0 986 479 248 Brake discs configuration effectively handles high heat generated by aggressive friction material. Engineers specify these fade-resistant materials to ensure structural rigidity. Consistent thermal stability prevents the formation of hot spots that often compromise braking efficiency. Users benefit from high temperature resistance that persists even after prolonged periods of heavy demand.


Integrated cooling efficiency for sustained performance

Component longevity is maximised through an optimised airflow strategy that preserves base metal integrity. Engineers achieve improved cooling by managing the rate of energy transfer away from the pad-to-rotor interface. The ventilated design allows for constant air turnover within the vane structure. Strategic cooling channels are machined to facilitate fast heat dissipation during intense driving scenarios.


Selection among top brands for reliable braking

Selecting components from reputable manufacturers ensures total compatibility with standard hydraulic systems. Fitting quality brands reduces the necessity for frequent mid-interval maintenance checks. Many well-known brands fail to meet the rigorous tolerances demanded by modern vehicle electronic stability programmes. By choosing trusted brands, technicians ensure that every pivot point functions as intended. The market availability of these best brake disc brands allows for seamless integration into various chassis configurations.


Consistent braking performance under heavy loads

A high braking performance is essential for maintaining vehicle control in adverse weather. Achieving maximum stopping power requires components that respond linearly to hydraulic line pressure. Strong braking force remains constant due to the consistent surface finish of the rotor. High friction performance allows for shorter deceleration distances in critical situations. Technicians often note that improved braking efficiency is the primary metric for evaluating long-term vehicle safety.


Engineering within the premium class for durability

The inclusion of top quality materials ensures that the casting meets rigorous industry standards. These high-end parts undergo exhaustive endurance testing before leaving the factory. Selecting premium quality components is a strategic decision for fleet managers focusing on maintenance reduction. Fitment of top-tier brands provides the reliability expected from premium tier inventory. The professional grade finish ensures that professional grade OE quality is maintained throughout the service life of the vehicle.


Enhancing braking comfort during daily operation

Achieving good pedal feel is a result of precise manufacturing tolerances that eliminate uneven surface wear. Precise braking is maintained through the reduction of mechanical chatter during pad engagement. Smooth braking is the outcome of rigorous balancing procedures performed during production. The controlled braking experience is further supported by a predictable response when the driver initiates the stop. Progressive braking ensures that the transition between energy states is imperceptible, while easy modulation allows for fine adjustments in traffic.


Achieving a low noise level during engagement

The anti-squeal properties of these components prevent the resonance typical of lower-grade castings. Silent braking is achieved by suppressing the high-frequency vibrations that emanate from the pad-rotor interface. Maintaining quiet operation reduces occupant fatigue during long motorway commutes. This noise-free operation is verified through extensive testing in varying environmental conditions. A low noise signature confirms the precision of the manufacturing process, while a squeak-free engagement signifies proper bedding-in characteristics.


Superior warp resistance for dimensional stability

These deformation-resistant components withstand the physical stresses of thermal expansion. The warp-resistant nature of the alloy prevents steering wheel judder that occurs when the disc surface becomes uneven. Being stable under stress, the rotor maintains its plane of rotation regardless of the ambient temperature. The metallurgy maintains shape under heat to ensure the brake pads maintain full contact with the friction surface at all times.


BOSCH 0986479248 Brake discs: Key Performance and Safety Highlights

Technical assessments indicate that 0 986 479 248 BOSCH Rotors exhibit high structural integrity under load. This allows for increased safety margins and reduced mechanical strain on hub assemblies. The following attributes quantify the performance characteristics of this component set.


Braking Attribute Performance Benefit
Internally vented design internally ventilated
Thermal stability fade-resistant materials
Heat dissipation efficiency ventilated
Brand positioning well-known brands
Stopping power strong braking force
High-end quality segment premium quality
Pedal response smoothness smooth braking
Acoustic comfort quiet operation
Geometric stability stable under stress

The BOSCH 0 986 479 248 Brake disc set provides the necessary thermal stability required for modern vehicle architectures. Utilizing these components ensures that the braking system operates within its design parameters for the duration of the service interval. Maintaining shape under heat is a critical factor for ensuring long-term hardware reliability in the automotive sector.


Why the BOSCH 0 986 479 248 Brake disc is an Excellent Choice

Investment in OE quality hardware ensures that rotor wear occurs at a predictable and slow rate. Cost-per-mile efficiency is optimised when the metallurgy of the disc is matched to the pad compound, preventing premature glazing. By selecting these components, workshops avoid the risk of returns associated with substandard casting quality. The long-term durability of this part proves that choosing a market leader is a sound engineering decision.


This BOSCH 0 986 479 248 component is rigorously tested to ensure it meets exact manufacturing specifications for vehicle safety systems. Fitment of this BOSCH 0 986 479 248 Brake disc set is recommended for all service applications where reliability is the primary consideration. Technicians should ensure the mounting surfaces are clean before installation to guarantee proper contact. Please consult your vehicle’s technical manual for torque specifications to ensure optimal operation.


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