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Solid carbide micro slot drill, DLC, ⌀ DC × L1: 0,3X3mm

Article no.: 201140 0,3X3

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⌀ DC × L1 (mm) Unit price incl. VAT

Availability

  • Tool material: Solid carbide
  • Standard: Manufacturer’s standard
  • Type: W
  • Tolerance nominal ⌀: 0 / −0.005
  • No. of teeth Z: 2

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Product details

Technical Data

Cutting edge ⌀ DC 0.3 mm
Coating DLC
Tool material Solid carbide
Standard Manufacturer’s standard
Type W
Tolerance nominal ⌀ 0 / −0.005
No. of teeth Z 2
Helix angle 25 degrees
Direction of infeed horizontal, oblique and vertical
Cutting width ae for milling operation Full slot cutting depth 1×D; 0.5×D for side milling
Shank DIN 6535 HA to h5
Through-coolant no
Flute length Lc 0.4 mm
Overhang length L1 incl. recess 3 mm
Recess ⌀ D1 0.28 mm
Overall length L 45 mm
Shank ⌀ Ds 4 mm
Corner chamfer angle 90 degrees
Feed fz for slot milling in cast aluminium 0.008 mm
Feed fz for side milling in cast aluminium 0.012 mm
Correction factor ap corr 0.5
Colour ring yellow
Type of product End / face mill

Identification & Classification

Article number 201140 0,3X3
EAN / GTIN 4045197912541
Manufacturer number 201140 0,3X3
Manufacturer Hoffmann Supply Chain GmbH & Co. KG, Poststraße 15, 90471 Nürnberg, Germany, www.hoffmann-group.com

Application Table

Aluminium
N
480
Aluminium (short chipping)
N
440
Alu > 10% Si
N
400
PMMA acrylic
N
200
PE-HD
N
160
PA 66
N
200
PEEK
N
150
PF 31
N
130
PVDF GF20
N
180
POM GF25
N
160
PA 66 GF30
N
150
PEEK GF30
N
130
PTFE CF25
N
160
Honeycomb sandwich
N
300
Cu
N
160
CuZn
N
200
wet maximum
 
wet minimum
 
dry
 
Air
 

Description

Version:

With advanced DLC sp2 coating. For the highest demands regarding performance and precision in aluminium materials. Extremely tight tolerances ensure maximum accuracy. Double relief ground with 2 hollow-ground chamfers. Recess angle α = 16°.
Tolerances:
  • Neck ⌀: D1 = 0 / -0.01 mm.

Note:

At greater tool overhang lengths, use a reduced value for ap!
Values for:
slots milled from solid: ap = 0.25×D×ap corr
side milling: ap = 0.5×D×ap corr
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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