Brake disc A.B.S. 18824 365x28mm, 5x120, Vented

Brake disc A.B.S. 18824 suitable for TESLA at cheap price
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Article №: 18824

Brake disc A.B.S. 18824

Details
  • Diameter: 365
  • Brake Disc Type: Vented
  • Rim Hole Number: 5
  • Bolt Hole Circle Ø [mm]: 120
  • Brake Disc Thickness: 28
  • Minimum thickness [mm]: 26
  • Centering Diameter [mm]: 70
  • Hub Diameter [mm]: 175
  • Height: 60
  • Weight [kg]: 9,4
  • Surface: Coated
  • Drilled: no
  • Condition: New
Brake rotor 365x28mm, 5x120, Vented (A.B.S. 18824)
Suitable for TESLA
0.0 - reviews
-50%
compared to RRP: £154.87
£76.99
incl. 20% VAT, free delivery
Over 100 items in stock
OE Numbers
Direct OEM number comparison
Suitable for these vehicles

A.B.S. 18824 Brake disc – Key Features & Performance

The A.B.S. 18824 Brake disc delivers precise stopping power through a combination of high-carbon metallurgical integrity and advanced thermal dissipation. By focusing on consistent lateral run-out tolerances and structural stability, this component ensures mechanical reliability across varying road conditions. Mechanics will find that the A.B.S. 18824 Brake disc provides a direct fitment profile that simplifies maintenance while maintaining strict adherence to original equipment standards.


Advanced internally ventilated designs for thermal management

The 18824 A.B.S. Brake discs incorporate an internally ventilated structure to handle the demands of modern braking systems. These internally ventilated channels facilitate rapid heat displacement during prolonged deceleration events. Technicians frequently note that the ventilated geometry mitigates surface glazing during heavy use. Implementing an optimised airflow design ensures that the contact patch maintains consistent friction levels. Each set of cooling vanes is precision-engineered to prevent thermal distortion under high-load cycles.


High carbon metallurgy ensures superior material quality

This premium alloy composition provides the structural rigidity required for demanding road applications. Engineers rely on improved metallurgy to counteract the stresses induced by high-torque vehicle platforms. Integrating high-grade materials reduces the propensity for surface cracking over extended operational cycles. A.B.S. 18824 Brake discs utilise high carbon content to enhance the damping characteristics of the casting. These components offer consistent hardness levels, which are critical for stable mechanical engagement.


Advanced thermal stability provides excellent heat resistance

A.B.S. 18824 Brake rotors maintain thermal stability even when subjected to intense friction profiles. The metallurgy is specifically formulated to ensure high temperature resistance during repeated emergency stops. Technicians confirm that the parts remain heat resistant despite aggressive driving patterns. The metallurgy successfully handles high heat without losing structural integrity or performance consistency. Incorporating fade-resistant materials allows the system to sustain peak effectiveness throughout diverse driving environments.


Zinc coated surfaces for reliable corrosion resistance

Engineered with corrosion-resistant properties, the hardware maintains a clean aesthetic profile and prevents seizure during wheel removal. Every 18824 A.B.S. unit receives a precision-applied zinc-coated finish to shield against road salts and humidity. Superior rust protection prevents the buildup of oxide layers that can impede pad movement within the carrier. This anti-corrosion coating ensures the friction surface remains clear of oxidation upon initial installation.


Engineered cooling efficiency through precision casting

The cooling channels within the assembly are calibrated to promote improved cooling during rapid temperature fluctuations. Achieving fast heat dissipation is essential for maintaining a stable friction coefficient on the surface. Engineers have balanced the mass to ensure an optimised airflow across the rotor faces. These cooling channels are strategically placed to ensure the hub remains within specified operating temperatures. Being internally ventilated, the component rejects heat effectively to prevent degradation of the surrounding braking hardware.


Extended service life and high durability

Constructed for an extended lifespan, the 18824 A.B.S. series withstands the rigours of high-mileage fleet operation. The heavy-duty casting ensures that components are long-lasting even under harsh environmental exposure. Maintenance schedules benefit from a long service life, reducing the frequency of mechanical intervention. High durability is achieved through strict quality control during the sand-casting process. The wear-resistant surfaces maintain their profile, providing consistent feedback to the driver over the entire life of the disc.


Cost-effective efficiency and value for money

The A.B.S. 18824 Brake disc set represents a cost-effective solution for workshop stock. Providing high quality for a good price allows professional garages to deliver premium results without exceeding maintenance budgets. This good value is supported by consistent manufacturing tolerances that reduce installation time. The best price-performance balance is achieved by aligning durability with acquisition costs. Clients benefit from a favourable price-to-quality ratio, ensuring the best value for money for mid-range passenger vehicles.


Enhanced braking performance for maximum control

18824 A.B.S. Rotors deliver strong braking force that matches the requirements of high-performance vehicle braking systems. The metallurgical consistency ensures high braking performance across a wide range of pedal pressures. Improved braking efficiency is standard, allowing for predictable deceleration cycles. High friction performance is achieved through a machined surface finish that promotes optimal pad seating. Delivering maximum stopping power, these components ensure safety through reliable interaction between the pad compound and the metallic surface.


A.B.S. 18824 Brake discs: Key Performance and Safety Highlights

The 18824 A.B.S. Rotors are manufactured to rigorous specifications to ensure alignment with OE hardware. These technical components provide reliable functionality and ensure that the entire braking assembly operates within safe parameters. Our technical table outlines the specific benefits of these high-specification items.


Braking Attribute Performance Benefit
Internally vented design optimised airflow design
High-carbon cast iron alloy high-grade materials
Thermal stability heat resistant
Anti-corrosion protection rust protection
Heat dissipation efficiency optimised airflow
Extended service life long-lasting
Cost-effective efficiency good value
Stopping power improved braking efficiency

The implementation of A.B.S. 18824 ensures that the rotor assembly manages heat dissipation efficiency effectively across the friction surface. Through the integration of cooling channels, the rotor maintains structural integrity during intensive use cases. This component selection provides a balanced approach to reliability for all compatible vehicle platforms.


Why the A.B.S. 18824 Brake disc is an Excellent Choice

Choosing an A.B.S. 18824 Brake disc ensures that your vehicle adheres to strict OE quality standards. The metallurgy reduces wear-induced variations, promoting cost-per-mile efficiency throughout the life of the component. Mechanics will appreciate the uniformity of the friction surface, which simplifies the bedding-in process. These factors combined create a professional-grade repair option that prioritises long-term mechanical stability.


With A.B.S. 18824, you receive an A.B.S. 18824 Brake disc set that has been rigorously tested against industry benchmarks. The precision-engineered geometry of the A.B.S. 18824 ensures seamless compatibility with existing caliper housings and pad compounds. We recommend this part for any workshop requiring a reliable, high-specification replacement that minimises the risk of premature degradation. Please consult your vehicle’s technical manual for correct torque specifications before proceeding with the installation.


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