Necessary Details About Solid Carbide Rotary Burrs

What are solid carbide rotary burrs?

A rotary burr is really a solid carbide cutting tool utilized for removing material from your work piece by rotating at high speeds, usually in the pneumatic air tool for instance a pencil grinder or even a milling machine or machining centre. They can be utilized in different metalworking applications for example deburring, stock removal, elimination of sharp edges counter sinking, shaping, grinding and opening an opening. Most burrs are made 100% from solid carbide, however, some larger diameter burrs feature a steel shank having a brazed carbide head. ATA Garryson burrs are made of a mixture of Tungsten Carbide and Cobalt. Cobalt could be the binder holding the carbide grains together. Harder than almost all metals, her ability to be applied out high speeds. It possesses a reduced likelihood of contamination and is utilized on most materials.


What materials can solid carbide burrs provide on?

Carbide burrs can be utilized on all metals, including steel, stainless, Inconel, aluminium, certain, hardened steel and titanium. They doubles on plastic, rubber, carbon fibre and fibre glass. With respect to the workpiece material, a specific cut type or coating may be required for optimal performance, for example alu-cut burrs feature wider chip pockets along with a single cut geometry to stop the aluminium from obstructing the burr, or possibly a coated burr may be needed on heat resistant materials including Inconel or metal.

What size carbide burrs can be obtained?

Our variety of burrs starts from just 1mm diameter and go all the way up up to 25mm diameter.

Exactly what is the benefit of a coated carbide burr?

Coated carbide burrs offer longer tool life in comparison to uncoated burrs, specially in metals which can be hard, heat resistant or abrasive.

Carbide Burr Cut Types Explained

The most common type of carbide burr cut type is a double cut burr, often known as a cross cut or diamond cut burr that are ideal for almost all applications. However, there are numerous other geometry burrs to select from which may aid performance in several applications:

Single cut carbide burrs:

These feature a single right hand spiral flute and they are mostly applied to ferrous materials including iron or non ferrous materials such as copper, brass and aluminium. They supply faster cutting with minimal built up edge, though the disadvantage is because pull up in one direction therefore driving them to harder for the operator than a double cut burr.

Double cut carbide burrs

The most popular and simple to utilize geometry for ferrous metals for example carbon and alloy steels or soft stainless steels. The feature right and left handed cutting angles (cross cut style) and can make a good surface finish in comparison with single cut burrs. A problem with the double cut burr is created up side of soft long chipping materials.

Aluminium cut (Alu-Cut) carbide burrs

Solid carbide burrs suitable for use on soft long chipping materials including aluminium, copper, brass and plastic. They feature sharp cutting edges and deep flute pockets, such as a milling cutter, which prevents built-up edge and allows for large stock removal. The sharp cutting edges ensure a fantastic surface finish.

Stainless cut (Inox-Cut) carbide burrs

It comes with a high end grinding giving 35 percent more stock removal compared to conventional burr geometry and reduced heat develop at the leading edge for optimum tool life.

Steel cut carbide burrs

A unique geometry double cut design especially for high stock removal applications on carbon and alloy steels.

Single Cut vs Double Cut Carbide Rotary Burrs

Two of the most popular varieties of Carbide rotary burr are single cut and double cut.

The only cut, that is suited to most ferrous metals, supplies a faster cut with minimal clogging. The one cut features a single right hand spiral flute.

The double cut, popular on hard metals to provide a finer, cleaner finish. The double cut has both right- and left-handed cutting angles.
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