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Mini cutter HSCo8 short, triple blade, centre-cutting

Mini end mill HSCo8 WN-K Z3 1.5xD 30° type N
CTR-SC-MINI-WN-S-HSCO8-D5,5MM

Art.-no. 5443600269
EAN 4055375874691

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Mini cutter HSCo8 short, triple blade, centre-cutting

Art.-no. 5443600269

Prices for customers after login
Quantity
PU
x 1 pcs

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Plunge milling to full groove depth or gradual infeed depth, also for use as end mill for conventional front and circumferential milling.
Product information

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Product code

1246

Material to be processed

Steel, Cast metal, Stainless steel, Titanium, Copper, Brass, Plastic

Diameter (d1)

5.5 mm

Shank diameter (d2)

6 mm

Length (l1)

39 mm

Cutting edge length (l2)

8 mm

Number of cutting edges (Z)

3 PCS

Standards

CS

Construction length

Short

Shank style

Cylindrical DIN 1835-B

Cutting material

HSCo8

Surface

Plain

Coolant supply

External

Twist angle

30°

Tolerance of cutting edge diameter

e8

Tolerance of shank diameter

h6

Material of sub-group

General structural steels, Non-alloyed tempering steels < 1000 N/mm², Alloyed tempering steels < 1000 N/mm², Nitriding steels < 1300 N/mm², Grey cast iron, Malleable cast iron, Stainless steels < 850 N/mm², Stainless steels > 850 N/mm², Titanium, Titanium alloys, Copper, Brass, Plastics

Legend
E = emulsion ae = 0.1xd1
vc = cutting speed [m/min]
fz = feed per tooth [mm/t] ap = 1.5xd1
ae = cutting thickness (radial)
ap = cutting thickness (axial)
The suggested cutting values are reference values and must be adapted to the respective conditions.
Cutting values for roughing contour
For dia. 1.5 to dia. 6
Material designation Tensile strength Cooling vc fz
Dia. 1.5 to dia. 1.9 Dia. 2 to dia. 3.9 Dia. 4 to dia. 5.9 Dia. 6
General structural steels < 500 N/mm² E 37 0,003 0,005 0,009 0,017
500-850 N/mm² E 30 0,003 0,005 0,007 0,014
Carbon steels < 850 N/mm² E 34 0,003 0,005 0,007 0,014
850-1000 N/mm² E 26 0,003 0,005 0,007 0,014
Unalloyed heat-treated steels < 700 N/mm² E 33 0,003 0,005 0,007 0,014
700-850 N/mm² E 30 0,003 0,005 0,007 0,014
850-1000 N/mm² E 24 0,003 0,005 0,007 0,014
Alloyed heat-treated steels 850-1000 N/mm² E 22 0,003 0,005 0,007 0,014
1000-1200 N/mm² E 18 0,003 0,005 0,009 0,017
Unalloyed case-hardening steels < 750 N/mm² E 30 0,003 0,005 0,007 0,014
Alloyed case-hardening steels < 1000 N/mm² E 22 0,003 0,005 0,007 0,014
1000-1200 N/mm² E 18 0,003 0,005 0,009 0,017
Nitriding steels < 1000 N/mm² E 22 0,003 0,005 0,007 0,014
1000-1200 N/mm² E 18 0,003 0,005 0,009 0,017
Tool steels < 850 N/mm² E 26 0,003 0,005 0,007 0,014
850-1100 N/mm² E 16 0,003 0,005 0,009 0,017
1100-1400 N/mm² E 9 0,003 0,005 0,009 0,017
High-speed steels 850-1200 N/mm² E 8 0,003 0,005 0,009 0,017
Wear-resistant constructional steel 1350 N/mm² E 9 0,003 0,005 0,009 0,017
Spring steels < 1200 N/mm² E 8 0,003 0,005 0,009 0,017
Stainless steels, sulphurated < 700 N/mm² E 24 0,003 0,005 0,007 0,014
Stainless steels, austenitic < 700 N/mm² E 18 0,003 0,005 0,007 0,014
< 850 N/mm² E 12 0,003 0,005 0,007 0,014
Stainless steels, martensitic < 1100 N/mm² E 9 0,003 0,005 0,009 0,017
Cast iron < 180 HB - 34 0,003 0,005 0,007 0,014
> 180 HB - 30 0,003 0,005 0,007 0,014
Nodular graphite, malleable iron > 180 HB - 26 0,003 0,005 0,007 0,014
> 260 HB E 18 0,003 0,005 0,007 0,014
Titanium, titanium alloys < 850 N/mm² E 9 0,003 0,005 0,009 0,017
Copper, low-alloy < 350 N/mm² E 73 0,007 0,010 0,014 0,027
Brass, short-chipping < 600 N/mm² - 73 0,007 0,010 0,014 0,027
Brass, long-chipping < 600 N/mm² - 49 0,007 0,010 0,014 0,027
Bronze, short-chipping < 600 N/mm² - 49 0,007 0,010 0,014 0,027
650-850 N/mm² - 37 0,007 0,010 0,014 0,027
Bronze, long-chipping < 850 N/mm² E 30 0,007 0,010 0,014 0,027
850-1200 N/mm² E 18 0,007 0,010 0,018 0,034
Cutting values for finishing contour
For dia. 1.5 to dia. 6
Material designation Tensile strength Cooling vc fz
Dia. 1.5 to dia. 1.9 Dia. 2 to dia. 3.9 Dia. 4 to dia. 5.9 Dia. 6
General structural steels < 500 N/mm² E 45 0,002 0,003 0,005 0,007
500-850 N/mm² E 38 0,002 0,003 0,004 0,006
Carbon steels < 850 N/mm² E 38 0,002 0,003 0,004 0,006
850-1000 N/mm² E 30 0,002 0,003 0,004 0,006
Unalloyed heat-treated steels < 700 N/mm² E 38 0,002 0,003 0,004 0,006
700-850 N/mm² E 38 0,002 0,003 0,004 0,006
850-1000 N/mm² E 30 0,002 0,003 0,004 0,006
Alloyed heat-treated steels 850-1000 N/mm² E 30 0,002 0,003 0,004 0,006
1000-1200 N/mm² E 25 0,002 0,003 0,005 0,007
Unalloyed case-hardening steels < 750 N/mm² E 38 0,002 0,003 0,004 0,006
Alloyed case-hardening steels < 1000 N/mm² E 30 0,002 0,003 0,004 0,006
1000-1200 N/mm² E 25 0,002 0,003 0,005 0,007
Nitriding steels < 1000 N/mm² E 30 0,002 0,003 0,004 0,006
1000-1200 N/mm² E 25 0,002 0,003 0,005 0,007
Tool steels < 850 N/mm² E 38 0,002 0,003 0,004 0,006
850-1100 N/mm² E 25 0,002 0,003 0,005 0,007
1100-1400 N/mm² E 20 0,002 0,003 0,005 0,007
High-speed steels 850-1200 N/mm² E 20 0,002 0,003 0,005 0,007
Wear-resistant constructional steel 1350 N/mm² E 15 0,002 0,003 0,005 0,007
Spring steels < 1200 N/mm² E 15 0,002 0,003 0,005 0,007
Stainless steels, sulphurated < 700 N/mm² E 38 0,002 0,003 0,004 0,006
Stainless steels, austenitic < 700 N/mm² E 38 0,002 0,003 0,004 0,006
< 850 N/mm² E 30 0,002 0,003 0,004 0,006
Stainless steels, martensitic < 1100 N/mm² E 25 0,002 0,003 0,005 0,007
Cast iron < 180 HB - 38 0,002 0,003 0,004 0,006
> 180 HB - 30 0,002 0,003 0,004 0,006
Nodular graphite, malleable iron > 180 HB - 30 0,002 0,003 0,004 0,006
> 260 HB E 25 0,002 0,003 0,004 0,006
Titanium, titanium alloys < 850 N/mm² E 20 0,002 0,003 0,005 0,007
Copper, low-alloy < 350 N/mm² E 120 0,004 0,006 0,008 0,011
Brass, short-chipping < 600 N/mm² - 100 0,004 0,006 0,008 0,011
Brass, long-chipping < 600 N/mm² - 100 0,004 0,006 0,008 0,011
Bronze, short-chipping < 600 N/mm² - 100 0,004 0,006 0,008 0,011
650-850 N/mm² - 80 0,004 0,006 0,008 0,011
Bronze, long-chipping < 850 N/mm² E 80 0,004 0,006 0,008 0,011
850-1200 N/mm² E 65 0,004 0,006 0,011 0,014
Legend
E = emulsion ae = 0.5xd1
vc = cutting speed [m/min]
fz = feed per tooth [mm/t] ap = 1xd1
ae = cutting thickness (radial)
ap = cutting thickness (axial)
The suggested cutting values are reference values and must be adapted to the respective conditions.

Art.-no.
Cust. Mat. No.

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