BM-35A Diamond Burr Cylinder 3.5x7x45mm OAL 3mm Shank
SKU#:
Minimum Quantity is 1 • Sold in increments of 1
Enter a value between 1 and 99999 in increments of 1.
Best Diamond Burrs are precision‑engineered rotary tools designed for fine grinding, shaping, engraving and detailing across a wide range of hard materials. Manufactured with industrial‑grade diamond abrasive bonded to a hardened steel shank, these burrs deliver consistent cutting performance, long service life and excellent control for close‑tolerance work. They are suitable for use on hardened steels, carbide, ceramics, glass, stone, composites and non‑ferrous metals. With multiple profiles available — including ball, rounded cone, pointed cone, cylinder and cylinder with ball‑nose — this range provides versatility for machinists, toolmakers, jewellers, engravers and general workshop users requiring accurate material removal in small formats. Their compact 3 mm shank and 45 mm overall length make them ideal for high‑speed rotary tools, precision handpieces and micro‑grinders where stability and smooth cutting action are essential.
- Industrial‑grade diamond abrasive provides high durability, efficient cutting and long operational life when working on hard and brittle materials.
- Multiple head shapes — ball, cone, pointed cone, cylinder and ball‑nose cylinder — offer flexibility for contouring, engraving, deburring and fine surface shaping.
- Precision‑bonded diamond coating delivers uniform cutting action, reduced chatter and improved control for delicate work.
- Compact 3 mm shank ensures compatibility with precision rotary tools, hand grinders and micromotor systems.
- 45 mm overall length provides good reach and visibility when working in small, tight or detailed areas.
- Suitable for machining hardened steels, carbide tools, glass, ceramics, stone, composites and non‑ferrous metals, making them versatile across workshop, fabrication, jewellery and toolroom environments.
- Consistent profile accuracy ensures repeatable results for engraving, detailing and finishing applications.
No content available
No content available
