Brake disc A.B.S. 17862 COATED 314x25mm, 5x112, Vented
- Product line: COATED
- Diameter: 314
- Brake Disc Type: Vented
- Rim Hole Number: 5
- Bolt Hole Circle Ø [mm]: 112
- Brake Disc Thickness: 25
- Minimum thickness [mm]: 23
- Centering Diameter [mm]: 68
- Hub Diameter [mm]: 166
- Height: 52,2
- Weight [kg]: 8,38
- Surface: Coated
- Drilled: no
- Condition: New
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A.B.S. 17862 Brake disc – Key Features & Performance
The A.B.S. 17862 Brake disc provides reliable stopping power through a design that prioritises high thermal stability and structural casting precision. These components mitigate thickness variation during intensive operation, ensuring that drivers experience consistent pedal feedback on UK roads. By maintaining tight manufacturing tolerances, the A.B.S. 17862 Brake disc delivers an immediate improvement in installation reliability for automotive workshops.
Establishing consistent braking performance on demand
Precision manufacturing processes ensure that the 17862 A.B.S. Brake discs provide strong braking force throughout the pad contact cycle. Drivers will notice high braking performance during low-speed commuting and rapid deceleration manoeuvres. This component is engineered to deliver maximum stopping power for modern vehicle platforms. Improved braking efficiency is maintained through controlled friction levels across the entire contact surface. Achieving high friction performance relies on consistent material density across the disc face.
Reducing judder for low vibration operation
Surface finishing standards ensure that 17862 A.B.S. Rotors remain anti-judder under fluctuating thermal loads. Mechanics will observe smooth rotation immediately following the bedding-in procedure on the axle. Consistent machining prevents no steering wheel wobble, fostering a composed driving experience. Avoiding no vibration issues remains a primary design objective for this specific axle component. Precision balancing protocols mitigate potential imbalance, ensuring a judder-free rotation profile.
Surface integrity of these coated discs
A durable anti-rust coating ensures the A.B.S. 17862 maintains its structural finish when exposed to road salt. Being factory painted shields the underlying metal from moisture ingress. Each unit is effectively coated to preserve the aesthetic and functional integrity of the hub contact area. This protective layer is applied using automated processes to guarantee uniform thickness. Consistent application of the protective finish prevents premature oxidation during periods of vehicle inactivity.
Advanced metallurgy for reliable heat resistance
The metallurgical composition allows the A.B.S. 17862 Brake disc set to remain heat resistant even after repeated heavy braking cycles. Maintaining excellent thermal stability is essential for preventing structural degradation. These fade-resistant materials handle extreme energy transitions without compromising component integrity. Ensuring high temperature resistance enables the assembly to operate within its design envelope consistently. Each cast unit successfully handles high heat, preserving mechanical properties for the duration of its service life.
Thermal efficiency of these ventilated discs
The internally ventilated core facilitates efficient heat transfer away from the hub. These ventilated units utilise air gaps to lower core temperatures rapidly. An optimised airflow design promotes constant thermal exchange during continuous rotation. Strategically placed cooling vanes manage internal temperatures effectively, preventing heat soak into the wheel bearing assembly.
Providing exceptional value for money
Fleet managers often note that A.B.S. 17862 Brake discs represent the best value for money in the current aftermarket. Achieving the best price-performance ratio requires balancing longevity with procurement costs. These parts are exceptionally cost-effective for high-mileage vehicle maintenance schedules. Our team considers this to be good value for professional garage workshops. The price-to-quality ratio ensures that maintenance budgets remain predictable over the long term. Providing high quality for a good price remains central to the product philosophy.
Ensuring long term component durability
Rigorous casting standards result in high durability, even when subjected to harsh environmental conditions. The components are specifically wear-resistant against abrasive brake pad compounds. A heavy-duty construction ensures that the unit withstands mechanical stress without thinning prematurely. Real-world testing confirms a long service life, reducing the frequency of unscheduled workshop visits. Long-lasting performance is further bolstered by precise geometric machining. Maintaining an extended lifespan is a critical benefit for the end-user.
Optimised metallurgy for superior material quality
The use of high carbon elements results in superior material quality compared to standard grey iron. Utilizing a premium alloy enhances the dampening properties of the casting. Engineers rely on high-grade materials to ensure consistent hardness across the entire diameter. Incorporating improved metallurgy prevents surface cracking under the extreme thermal expansion encountered in real-world driving.
Geometric stability for excellent warp resistance
Precision machining ensures the unit remains warp-resistant throughout its functional cycle. Being deformation-resistant is critical for maintaining a consistent pad-to-disc interface. The casting remains stable under stress during aggressive braking events. Every unit maintains shape under heat to eliminate uneven wear patterns on the pad surface.
Specialised metallurgy for superior corrosion resistance
A sophisticated manufacturing process ensures the unit is corrosion-resistant against common road contaminants. Being zinc-coated provides an extra barrier against electrolyte-induced degradation. Enhanced rust protection extends the life of the mounting points. Applying a robust anti-corrosion coating prevents the hub area from seizing during the next disc replacement interval.
A.B.S. 17862 Brake discs: Key Performance and Safety Highlights
The following table outlines the technical specifications for A.B.S. 17862 Rotors. Performance data is derived from controlled testing environments. These metrics represent the core engineering focus for this product range.
| Braking Attribute | Performance Benefit |
|---|---|
| Stopping power | maximum stopping power |
| Judder-free operation | anti-judder |
| Protective anti-corrosive coating | anti-rust coating |
| Thermal stability | heat resistant |
| Heat dissipation efficiency | optimised airflow design |
| Cost-effective efficiency | best value for money |
| Extended service life | high durability |
| High-carbon cast iron alloy | high carbon |
| Geometric stability | warp-resistant |
| Anti-corrosion protection | corrosion-resistant |
The 17862 A.B.S. Brake discs function effectively under varied load conditions, maintaining high temperature resistance throughout the duty cycle. Installation is straightforward due to the precise manufacturing tolerances adhered to during the casting process. Technicians appreciate the minimal run-out specifications, which ensures that the friction surfaces align perfectly with the calipers.
Why the A.B.S. 17862 Brake disc is an Excellent Choice
Original Equipment standards guide the development of this rotor, ensuring it matches the specifications of the vehicle manufacturer. The high-carbon iron mix manages thermal dissipation effectively, which lowers the cost-per-mile for fleet operators. By reducing the rate of wear, the design ensures that vehicle downtime remains minimal. Regular maintenance intervals are supported by the predictable decay rate of these quality components.
Selecting A.B.S. 17862 for your next service requirement guarantees compatibility and reliable mechanical feedback. Each A.B.S. 17862 Brake disc set provides the necessary structural integrity for demanding driving conditions. Technicians should verify axle orientation during installation to ensure optimal cooling vane efficiency. Please consult the digital catalogue to confirm specific vehicle application compatibility.