Midwest Multi-Use Diamonds 878-018C FG Cyl Bevel Mod 5/Pk

Midwest Multi-Use Diamonds 878-018C FG Cyl Bevel Mod 5/Pk

Regular price $66.35 USD
Regular price Sale price $66.35 USD
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  • 878-018C cylindrical bevel shape
  • FG high-speed compatibility
  • Multi-use diamond coating
  • Quantity: 5 burs per pack
  • 1.8 mm working diameter

The Dentsply Midwest Multi-Use Diamonds 878-018C FG Cyl Bevel Mod 5/Pk are friction grip diamond burs engineered for controlled axial reduction, margin refinement, and versatile tooth preparation across restorative and prosthodontic procedures. Featuring the 878-018C cylindrical bevel modified profile with an 018 head diameter, this bur is designed to create defined preparation walls while supporting smooth margin transitions in crown and bridge workflows.

The cylindrical body promotes parallel axial wall shaping, while the beveled end helps refine shoulder and chamfer margins without producing sharp internal line angles that could compromise restoration fit or ceramic strength. Manufactured with evenly distributed diamond particles, these burs provide consistent cutting efficiency and balanced abrasion under high-speed rotation. If you have ever wondered about what the Dentsply Midwest Multi-Use Diamonds 878-018C FG Cyl Bevel Mod 5/Pk are used for, they are the best cylindrical bevel diamond burs for achieving precise margin development and controlled structure reduction in full-coverage crown preparations.

The FG shank ensures secure seating within standard high-speed handpieces, delivering stable rotational performance and reducing vibration during preparation. Designed for multi-use durability, these diamonds maintain cutting effectiveness across repeated procedures when properly sterilized and maintained. Their predictable cutting action supports efficient enamel and dentin reduction while preserving preparation geometry.

They are also the best 878-018C FG diamond burs for clinicians seeking dependable axial wall control, refined margin shaping, and consistent restorative preparation performance in demanding clinical environments.

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