Description
QA1 CFL4 Carbon Steel Rod End: Precision and Durability
The QA1 CFL4 is a top-tier self-lubricating rod end designed for those who demand quality and performance. This two-piece female rod end features a robust carbon steel construction with a PTFE liner, making it an excellent choice for various applications.
Key Features
- < li >Material Quality: Constructed from high-strength 52100 bearing steel, heat-treated for enhanced durability.
< li >Corrosion Resistance: Each rod end is protective coated to resist corrosion, ensuring longevity even in challenging environments.
< li >Precision Engineering: The body is precision ground for optimal performance, providing a smooth and reliable operation.
< li >Thread Configurations: Available in both left and right-hand threads, allowing for versatile installation options.
< li >Bore Size: Features a bore size of 0.2500 inches, making it suitable for a variety of applications.
< li >Thread Size: Equipped with a 1/4-28 inch left-hand female thread for easy compatibility.
Specifications
- < li >Type: Rod End – CF Series – Spherical
< li >Bore Size: 1/4 inch
< li >Thread Size: 1/4-28 inch Left Hand Female Thread
< li >Body Material: Carbon Steel
< li >Finish: Zinc Oxide Coating
Fitment
The CFL4 rod end is versatile and can be used in a wide range of applications, from automotive to industrial machinery. Its robust design ensures a secure fit, making it a reliable choice for your projects.
Customer Insights
Users appreciate the CFL4 for its impressive durability and ease of installation. Many have noted that the corrosion-resistant coating holds up well in various environments, making it a dependable component for long-term use. The precision ground body is often highlighted for providing smooth operation, which is crucial in high-performance settings.
Whether you’re upgrading your vehicle or working on a custom project, the QA1 CFL4 rod end is engineered to meet the demands of both professionals and enthusiasts alike.
Other Part Numbers:
QA1 #qapCFL4
WARNING: Cancer and Reproductive Harm
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