The Mahle OE Performance Plasma Steel Top Ring Set is engineered for high-performance automotive applications, offering durability and precision with each component. Designed with a 4.135-inch diameter, these top rings feature a 1.0mm thickness and a .143-inch ring width, making them suitable for various engine rebuilds and restorations. The rings are coated using High-Velocity Oxygen Fuel (HVOF) technology with a molybdenum coating, enhancing wear resistance and thermal stability for extended engine life. These rings provide excellent sealing and combustion efficiency, ensuring optimal engine performance and minimizing blow-by and oil consumption. Manufactured by Mahle OE, a trusted name in automotive components, these rings meet rigorous quality standards for reliability and consistency. The bulk pack of 48 rings offers a cost-effective solution for professional mechanics and engine builders working on multiple engines or large-scale repairs. Compatibility with a wide range of engine models makes these rings versatile for various rebuild projects. The set is ideal for restoring engine performance, improving compression, and ensuring long-term durability under demanding conditions. Proper installation and use of these rings will contribute to the overall efficiency and longevity of your engine, making them an essential part of your rebuild toolkit.
Features:
- Diameter: 4.135 inches for a precise fit in compatible engines
- Thickness: 1.0mm to ensure proper sealing and compression
- Ring Width: .143 inches for effective combustion chamber sealing
- Coating: HVOF molybdenum coating for enhanced wear and thermal resistance
- Material: Plasma steel for strength and durability in high-performance engines
- Bulk Pack: Contains 48 rings for extensive rebuild projects
- Manufactured by Mahle OE, a trusted name in automotive components
- Designed for reliable sealing, reducing blow-by and oil consumption
- Suitable for engine rebuilds, restorations, and performance upgrades
- Easy to install with precision-machined components for optimal fit