PFERD Carbide Bur SF-42 Tree Shape MICRO Cut 1/8" x 1/2" x 1/8" Shank
SKU:21827524
Stock Item:Stock items typically ship within 2-3 business days
UPC:4007220850220
$10.46
each
Product Description
MICRO cut tungsten carbide burs are specifically designed for finishing and are used in areas where mounted points are often used. They offer a higher stock removal rate and produce a high surface quality, particularly when compared to conventional double cut burs. MICRO cut burs also operate with low vibration and little noise, they maintain their geometry over their entire service life, and they work in both manual and machine applications. MICRO cut burs can machine almost all materials up to a hardness of 940 HV (68 HRC). Tree bur with radius end, shape F.
Specifications
Size
1/8 Inch
Shape
Tree
Features
High surface quality.
Unlike with abrasive mounted points, there is no change in geometry due to wear and tear.
Work on almost all materials up to 940 HV (68 HRC).
The highly accurate concentricity enables precise work free from chatter marks. This considerably reduces wear on the bur and power tool or machine.
PFERD has developed the ALU cut specifically for stock removal on aluminum. This cut achieves a high stock removal rate. Tree bur with radius end, shape F.
With the INOX cut, PFERD has developed innovative burs specifically for stainless steel (INOX). They achieve incredibly high stock removal on all austenitic steels, as well as rust- and...
Single cut burs are ideal for machining cast iron, steel, stainless steel (INOX), nickel-based alloys, and titanium alloys. These burs have a high stock removal rate and achieve a good surface finish...
Double cut burs are cross cut and ideal for machining cast iron, steel, stainless steel (INOX), nickel-based alloys, and titanium alloys. These burs have a high stock removal rate. Universal line...
MICRO cut tungsten carbide burs are specifically designed for finishing and are used in areas where mounted points are often used. They offer a higher stock removal rate and produce a high surface...