Solid carbide torus cutter R1 0.1 2X30 mm

Article no.: 209716 2X30
plus VAT at the current rate Prices plus delivery costs
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In stock
36 pieces in stock
  • Tool material: Solid carbide
  • Standard: Manufacturer’s standard
  • Tolerance nominal ⌀: 0 / −0.005
  • Direction of infeed: horizontal, oblique and vertical
  • Cutting width ae for milling operation: 0.5×D for side milling; 0.05×D for copy milling

Product details

Technical Data

Cutting edge ⌀ DC 2 mm
Coating Diamond
Tool material Solid carbide
Standard Manufacturer’s standard
Tolerance nominal ⌀ 0 / −0.005
No. of teeth Z 2
Helix angle 30 degrees
Direction of infeed horizontal, oblique and vertical
Cutting width ae for milling operation 0.5×D for side milling; 0.05×D for copy milling
Shank DIN 6535 HA to h5
Through-coolant no
Flute length Lc 2 mm
Corner radius R1 0.1 mm
Overhang length L1 incl. recess 30 mm
Recess ⌀ D1 1.91 mm
Overall length L 70 mm
Shank ⌀ Ds 4 mm
Feed fz for side milling in graphite 0.03 mm
Feed fz for copy milling in graphite 0.03 mm
Correction factor ap corr 0.2
Colour ring black
Type of product Torus cutter

Identification numbers & Classifications

Article number 209716 2X30
EAN / GTIN 4045197918321

Application Table

PVDF GF20
N
200
POM GF25
N
190
PA 66 GF30
N
170
PEEK GF30
N
150
PTFE CF25
N
180
PEEK CF30
N
160
Honeycomb sandwich
N
350
GRP
N
190
GRP, CRP
N
190
Graphite
N
340
Hybrids
N
wet minimum
 
dry
 
Air
 

Description

Version:

With crystalline diamond sp3 coating. For the highest demands regarding performance and precision in fibre-reinforced composites, CRP, GRP, and graphite. Extremely tight tolerances ensure maximum accuracy. Double relief ground with 2 hollow-ground chamfers. Recess angle α = 16°.
Tolerances:
  • Corner radius: R1 = ±0.0025 mm
  • Neck ⌀: D1 = 0 / -0.01 mm

Note:

At greater tool overhang lengths, use a reduced value for ap!
Values for:
copying: ap = 0.10×D×ap korr
side milling: ap = 0.20×D×ap korr
To calculate the feed rate vf please use the actual speed of the machine (the maximum possible speed)!
e.g: vf = 18000 [rpm]× fz [mm/Z]× z

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