J&T Bearing Co. J&T Gold Anti Wear Grease (10mg)

J&T Bearing Co. J&T Gold Anti Wear Grease (10mg)
Back Order Now
You may back order this item and it will ship when it arrives.
Price: $7.79

Please Log in to receive a notification when this item arrives in stock.

Save In List
This item earns up to 8 VIP Reward Points Learn More

Anti Wear Grease Overview:

This is the J&T Gold Anti-Wear Grease from J&T Bearing Co., designed to provide high-performance lubrication for gears, thrust bearings, and other critical components. Formulated to reduce friction and wear, this heavy-viscosity grease adheres to surfaces without running, ensuring long-lasting protection. Packaged in a compact, leak-free plastic twist-top container, it is easy to transport and apply, making it an essential addition to any maintenance kit. Whether you're working on RC vehicles or other mechanical applications, J&T Gold Anti-Wear Grease delivers the durability and performance you need.

About the Grease


Long-Lasting, High-Viscosity Formula

The J&T Gold Anti-Wear Grease is engineered for superior adhesion and long-term lubrication, staying in place even under high-stress conditions. Its thick, heavy-duty viscosity ensures that it remains where applied, offering consistent performance without running or thinning over time. Perfect for gears, thrust bearings, and other high-friction components, this grease extends the lifespan of your parts while maintaining smooth operation.

Features:

  • High-performance lubrication to reduce friction and wear
  • Heavy-viscosity formula stays in place for long-term protection
  • Ideal for gears, thrust bearings, and other high-friction components
  • Non-running formula ensures consistent and reliable application
  • Compact, leak-free plastic twist-top container for easy transport
  • Durable and long-lasting for extended maintenance intervals
  • Suitable for RC vehicles and various mechanical applications

Includes:

  • (1) J&T Gold Anti Wear Grease (10mg)

This product was added to our catalog on March 3, 2025