Tungsten carbide burrs for general use, cut 5, conical counterbore shape KSJ

Tungsten carbide burr conical counterbore KSJ 60 ° dia. 16x13 mm shank dia. 6 mm Z5 universal fine

Item number:
21115356
EAN:
4007220047507
Technical information
Tungsten carbide burr conical counterbore KSJ 60 ° dia. 16x13 mm shank dia. 6 mm Z5 universal fine

Angle
60 °
Cut
5
Dia. external
16 mm
Dia. shank
6 mm
Length, cut
13 mm
Length, total
2,204
Length, total
56 mm
RPM from, hard non-ferrous metals
7000 RPM
RPM from, hardened, heat-treated steels over 1,200 N/mm²
7000 RPM
RPM from, high-temperature-resistant materials
7000 RPM
RPM from, rust and acid-resistant steels
7000 RPM
RPM from, steels up to 1,200 N/mm²
9000 RPM
RPM to, hard non-ferrous metals
9000 RPM
RPM to, hardened, heat-treated steels over 1,200 N/mm²
9000 RPM
RPM to, high-temperature-resistant materials
12000 RPM
RPM to, rust and acid-resistant steels
9000 RPM
RPM to, steels up to 1,200 N/mm²
12000 RPM
Packaging unit
1 piece
Description

Cut 5 is especially well-suited to fine machining of cast iron, steel, stainless steel (INOX) and high-temperature-resistant materials such as nickel-based and cobalt-based alloys. It achieves a good surface.

Tungsten carbide burrs for general applications are suitable for fine and coarse stock removal on the key materials used in industrial manufacturing. They provide a good stock removal rate and are not specific to a particular material.

Conical counterbore burr according to DIN 8032 with cut conforming to DIN 8033, with point angle (60°). Suitable for flexible counterboring and chamfering.

Due to their special shapes, tungsten carbide burrs for flexible work on edges achieve almost precise chamfers or radii and can also be used flexibly in hard-to-reach areas. They are mainly used in steel and aluminium construction and have been specifically designed for chamfering, deburring and rounding of edges.

Advantages
  • Good stock removal rate through optimum matching of tungsten carbide, geometry, cut and available coating.
  • Long tool life.
  • The highly accurate concentricity enables impact­free working without creating chatter marks. This considerably reduces wear on the tool and tool drive.
  • High surface quality.
Recommendations for use
  • If the smallest area of the burr diameter is being used, the recommended rotational speed can be increased accordingly.
  • To ensure cost­effective use of burrs, use a higher rotational speed and cutting speed. Use burrs with a shank diameter of 6 mm with drives with a power output from 300 watts.
Materials that can be worked
Bronze
Case-hardened steels
Cast steel
Cobalt-based alloys
Hard aluminium alloys
Hardened, heat-treated steels over 1.200 N/mm² (< 38 HRC)
Hard non-ferrous metal
High-temperature-resistant materials
Nickel-based alloys (e.g. Inconell and Hastelloy)
Stainless steel (INOX)
Steel
Steel, cast steel
Steels over 700 N/mm² (> 220 HB)
Steels up to 1,200 N/mm² (< 38 HRC)
Steels up to 700 N/mm² (< 220 HB)
Titanium
Titanium alloys
Tool steels
Applications
Cutting out holes
Deburring
Leveling
Milling
Milling out
Surface work
Work on weld seams
Drive types
Flexible shaft drive
Robot
Stationary machines
Straight grinder
Tool machine
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