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ecoSpeedcut Universal solid carbide end mill, short, four blades, uneven angle of twist gradient, HA shank

End mill SC WN Z4 2xD/1.3xD 35-38° TiAlN-S HA
ENDMIL-ECOSP-K-UV-SC-TIALN-HA-D12

Art.-no. 5443314405
EAN 4062856167302

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ecoSpeedcut Universal solid carbide end mill, short, four blades, uneven angle of twist gradient, HA shank

Art.-no. 5443314405

Prices for customers after login
Quantity
PU
x 1 pcs

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Solid carbide high-performance cutter for universal application: short, robust design and soft cut (10 degrees). Particularly suitable for roughing, finishing and grooving in CNC milling centres, in combined turning and milling centres as well as on turning machines. Different spiral angles produce smooth, vibration-free running and an excellent surface quality. High cutting performance.
Product information

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Product code

7627

Material to be processed

Steel, Cast metal, Stainless steel, Titanium, Hard and tough material, Copper, Brass, Aluminium

Diameter (d1)

12 mm

Shank diameter (d2)

12 mm

Clearance diameter (d3)

11.5 mm

Standards

CS

Construction length

Short

Shank style

Cylindrical DIN 6535-HA

Cutting material

SC

Surface

TiAlN-S

Coolant supply

External

Twist angle

35-38°

Length (l1)

50 mm

Cutting edge length (l2)

15 mm

Clearance length (l3)

24 mm

Number of cutting edges (Z)

4 PCS

Corner chamfer

0.25 mm

Tolerance of cutting edge diameter

h10

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, Steels > 45 HRC, Copper, Brass, Aluminium

Key
L = air ae = 0.5xd1
E = emulsion
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.
Cutting values for roughing groove
For dia. 4 to dia. 12
Material designation Tensile strength Cooling vc fz
Dia. 4 Dia. 6 Dia. 8 Dia. 10 Dia. 12
General structural steels < 500 N/mm² L + E 210 0,023 0,036 0,045 0,059 0,072
500-850 N/mm² L + E 170 0,023 0,032 0,045 0,054 0,068
Carbon steels < 850 N/mm² L + E 170 0,023 0,032 0,045 0,054 0,063
850-1000 N/mm² L + E 160 0,018 0,027 0,036 0,050 0,059
Unalloyed heat-treated steels < 700 N/mm² L + E 165 0,023 0,036 0,045 0,059 0,072
700-850 N/mm² L + E 165 0,023 0,032 0,045 0,056 0,068
850-1000 N/mm² L + E 165 0,018 0,027 0,036 0,050 0,059
Alloyed heat-treated steels 850-1000 N/mm² L + E 160 0,018 0,027 0,036 0,050 0,054
1000-1200 N/mm² L + E 140 0,018 0,027 0,036 0,045 0,050
Unalloyed case-hardening steels < 750 N/mm² L + E 210 0,023 0,036 0,045 0,059 0,072
Alloyed case-hardening steels < 1000 N/mm² L + E 160 0,018 0,027 0,036 0,050 0,059
1000-1200 N/mm² L + E 140 0,018 0,027 0,036 0,045 0,054
Nitriding steels < 1000 N/mm² L + E 160 0,018 0,027 0,036 0,050 0,059
1000-1200 N/mm² L + E 140 0,018 0,027 0,032 0,041 0,045
Tool steels < 850 N/mm² L + E 170 0,018 0,027 0,036 0,050 0,059
850-1100 N/mm² L + E 160 0,016 0,023 0,032 0,045 0,054
High-speed steels 850-1200 N/mm² L + E 95 0,018 0,027 0,036 0,045 0,054
Spring steels < 1200 N/mm² L + E 95 0,014 0,023 0,027 0,036 0,041
Stainless steels, sulphurated < 700 N/mm² E 115 0,018 0,027 0,036 0,050 0,059
Stainless steels, austenitic < 700 N/mm² E 110 0,018 0,027 0,036 0,045 0,054
< 850 N/mm² E 95 0,018 0,027 0,036 0,045 0,054
Stainless steels, martensitic < 1100 N/mm² E 80 0,018 0,027 0,036 0,045 0,056
Special alloys < 1200 N/mm² E 65 0,014 0,023 0,032 0,041 0,045
Titanium, titanium alloys < 850 N/mm² E 60 0,018 0,027 0,036 0,045 0,054
Cast iron < 180 HB - 145 0,021 0,036 0,045 0,068 0,081
< 180 HB - 115 0,023 0,032 0,036 0,054 0,059
Nodular graphite, malleable iron < 180 HB - 115 0,023 0,032 0,036 0,054 0,059
> 260 HB E 95 0,023 0,032 0,036 0,054 0,059
Cutting values for roughing contour
For dia. 4 to dia. 12
Material designation Tensile strength Cooling vc fz
Dia. 4 Dia. 6 Dia. 8 Dia. 10 Dia. 12
General structural steels < 500 N/mm² L + E 231 0,025 0,040 0,050 0,065 0,079
500-850 N/mm² L + E 187 0,025 0,035 0,050 0,059 0,075
Carbon steels < 850 N/mm² L + E 187 0,025 0,035 0,050 0,059 0,069
850-1000 N/mm² L + E 176 0,020 0,030 0,040 0,055 0,065
Unalloyed heat-treated steels < 700 N/mm² L + E 182 0,025 0,040 0,050 0,065 0,079
700-850 N/mm² L + E 182 0,025 0,035 0,050 0,062 0,075
850-1000 N/mm² L + E 182 0,020 0,030 0,040 0,055 0,065
Alloyed heat-treated steels 850-1000 N/mm² L + E 176 0,020 0,030 0,040 0,055 0,059
1000-1200 N/mm² L + E 154 0,020 0,030 0,040 0,050 0,055
Unalloyed case-hardening steels < 750 N/mm² L + E 231 0,025 0,040 0,050 0,065 0,079
Alloyed case-hardening steels < 1000 N/mm² L + E 176 0,020 0,030 0,040 0,055 0,065
1000-1200 N/mm² L + E 154 0,020 0,030 0,040 0,050 0,059
Nitriding steels < 1000 N/mm² L + E 176 0,020 0,030 0,040 0,055 0,065
1000-1200 N/mm² L + E 154 0,020 0,030 0,035 0,045 0,050
Tool steels < 850 N/mm² L + E 187 0,020 0,030 0,040 0,055 0,065
850-1100 N/mm² L + E 176 0,018 0,025 0,035 0,050 0,059
High-speed steels 850-1200 N/mm² L + E 105 0,020 0,030 0,040 0,050 0,059
Spring steels < 1200 N/mm² L + E 105 0,015 0,025 0,030 0,040 0,045
Stainless steels, sulphurated < 700 N/mm² E 127 0,020 0,030 0,040 0,055 0,065
Stainless steels, austenitic < 700 N/mm² E 121 0,020 0,030 0,040 0,050 0,059
< 850 N/mm² E 105 0,020 0,030 0,040 0,050 0,059
Stainless steels, martensitic < 1100 N/mm² E 88 0,020 0,030 0,040 0,050 0,062
Special alloys < 1200 N/mm² E 72 0,015 0,025 0,035 0,045 0,050
Titanium, titanium alloys < 850 N/mm² E 66 0,020 0,030 0,040 0,050 0,059
Cast iron < 180 HB - 160 0,023 0,040 0,050 0,075 0,089
< 180 HB - 127 0,025 0,035 0,040 0,059 0,065
Nodular graphite, malleable iron < 180 HB - 127 0,025 0,035 0,040 0,059 0,065
> 260 HB E 105 0,025 0,035 0,040 0,059 0,065
Key
L = air ae = 1xd1
E = emulsion
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.
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