MAHLE ORIGINAL/CLEVITE CB527HND1 Connecting Rod Bearing for H-Series Engines, 0.001 Inch Undersize, Narrowed, Doweled Design

MAHLE ORIGINAL/CLEVITE CB527HND1 Connecting Rod Bearing for H-Series Engines, 0.001 Inch Undersize, Narrowed, Doweled Design

$33.99
Sale price  $33.99 Regular price 
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MAHLE ORIGINAL/CLEVITE CB527HND1 Connecting Rod Bearing for H-Series Engines, 0.001 Inch Undersize, Narrowed, Doweled Design

MAHLE ORIGINAL/CLEVITE CB527HND1 Connecting Rod Bearing for H-Series Engines, 0.001 Inch Undersize, Narrowed, Doweled Design

$33.99
Sale price  $33.99 Regular price 
Rod Bearing

The MAHLE ORIGINAL/CLEVITE CB527HND1 connecting rod bearing is engineered for H-Series engines, including Mopar B / RB-Series and 426 Hemi applications. This bearing features a 0.001 inch undersize, providing precise clearance adjustments for optimal engine performance. Its narrowed profile ensures proper fitment in tight engine spaces, while the doweled design enhances stability during operation, reducing movement and wear. Crafted from durable materials, this bearing is designed for longevity and reliable performance under demanding conditions. It is suitable for high-performance and rebuilding applications where exact fit and durability are critical for engine longevity. Installation of this bearing can help restore engine efficiency and maintain proper oil clearance, essential for smooth engine operation and power delivery. Proper selection and installation of this component are vital for maintaining engine integrity and performance over time. Whether for rebuilds or repairs, this bearing provides a high-quality solution for professional mechanics and automotive enthusiasts focused on engine precision and durability.

Features:

  • Designed for H-Series engines including Mopar B / RB-Series and 426 Hemi
  • 0.001 inch undersize for precise clearance adjustment
  • Narrowed profile to suit tight engine spaces
  • Doweled design for enhanced stability during operation
  • Constructed from durable materials for longevity and reliability

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