ultra cylindrical carbide burs, ZYA, without end cut, 6 mm

The revolutionary geometry is characterised by unique toothing that makes the milling cutter more universal and enables unrivalled levels of aggression in use. By using the latest coating technology, the milling cutter boasts an outstanding service life and unsurpassed productivity.

Application: area: For all types of metal, such as: - Steel <60 HRC - Stainless steel (INOX) - Nickel-based metal and titanium alloys - Cast iron - Also suitable for copper, brass and bronze

Field of Application: Solid cemented carbide head on Ø 6 mm HSS shaft (soldered), with head Ø 6 mm made entirely from solid carbide. Precision manufacture on ultra-modern CNC grinding machines ensures accurate and uniform toothing with optimal tooth sharpening angle. Recommended cutting speed v = 500–960 m/min. Calculation of speed n (min): n = (v x 1000) / (d x 3.1415) Result: Optimal economic results are achieved by applying the highest possible speed.

Innritan verður skjótt tøk — fá prísir við at seta teg í samband við okkum: a4@a4.fo
Vørunummar0678300111
EAN9010685377794
Construction product0 - not applicable
Diameter6 mm
FormA
Length50 mm
Shank diameter6 mm
SupplierRECA NORM


The revolutionary geometry is characterised by unique toothing that makes the milling cutter more universal and enables unrivalled levels of aggression in use. By using the latest coating technology, the milling cutter boasts an outstanding service life and unsurpassed productivity.

Application area:

For all types of metal, such as:

- Steel <60 HRC

- Stainless steel (INOX)

- Nickel-based metal and titanium alloys

- Cast iron

- Also suitable for copper, brass and bronze

Field of Application:

  • Solid cemented carbide head on Ø 6 mm HSS shaft (soldered), with head Ø 6 mm made entirely from solid carbide. Precision manufacture on ultra-modern CNC grinding machines ensures accurate and uniform toothing with optimal tooth sharpening angle. Recommended cutting speed v = 500–960 m/min.
  • Calculation of speed n (min): n = (v x 1000) / (d x 3.1415)
  • Result: Optimal economic results are achieved by applying the highest possible speed.

Advantages:

- Revolutionary universal geometry with a unique combination of profiled toothing with a low double cut and clearance angle

- Significantly increased removal

- Aggressive geometry significantly improves cutting performance

- Lower heat generation

- The high-end coating significantly improves the tool life compared to standard tools.

- Lower thermal load on the tool

- Also highly suitable for hard materials and stainless steel

- Improved chip removal

- Maximum comfort due to minimal vibration

- Tooth geometry ensures extremely quiet operation

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