Solid carbide end mill, short, twin blade
End mill SC Alu WN-K Z2 2xD 30° type W
ENDMIL-WN-ALU-SC-W-D12
Art.-no.
5443301721
EAN 4055375917114
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Recommended for milling in aluminium and aluminium alloys, plastics, copper alloys and non-ferrous metals.
Product information
Datasheets(X)
Product code | 6915 |
Material to be processed | Aluminium, Copper, Brass, Plastic |
Diameter (d1) | 12 mm |
Shank diameter (d2) | 12 mm |
Standards | CS |
Construction length | Short |
Shank style | Cylindrical |
Cutting material | SC |
Surface | Plain |
Coolant supply | External |
Twist angle | 30° |
Length (l1) | 73 mm |
Cutting edge length (l2) | 22 mm |
Number of cutting edges (Z) | 2 PCS |
Tolerance of cutting edge diameter | h10 |
Tolerance of shank diameter | h6 |
Material of sub-group | Aluminium, 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 finishing contour | |||||||
For dia. 10-20 | |||||||
Material designation | Tensile strength | Cooling | vc | fz | |||
Dia. 10-11.9 | Dia. 12-15.9 | Dia. 16-19.9 | Dia. 20 | ||||
Aluminium, aluminium alloys | < 530 N/mm² | E | 400 | 0,063 | 0,079 | 0,101 | 0,126 |
Aluminium, cast aluminium alloys < 10 % Si | < 600 N/mm² | E | 300 | 0,063 | 0,079 | 0,101 | 0,126 |
Aluminium, cast aluminium alloys > 10 % Si | < 600 N/mm131 | E | 250 | 0,063 | 0,079 | 0,101 | 0,126 |
Magnesium, magnesium alloys | < 280 N/mm² | E | 400 | 0,063 | 0,079 | 0,101 | 0,126 |
Copper, low-alloy | < 350 N/mm² | E | 200 | 0,063 | 0,079 | 0,101 | 0,126 |
Brass, short-chipping | < 600 N/mm² | - | 180 | 0,063 | 0,079 | 0,101 | 0,126 |
Brass, long-chipping | < 600 N/mm² | - | 180 | 0,063 | 0,079 | 0,101 | 0,126 |
Bronze, short-chipping | < 600 N/mm² | - | 180 | 0,063 | 0,079 | 0,101 | 0,126 |
650-850 N/mm² | - | 150 | 0,063 | 0,079 | 0,101 | 0,126 | |
Bronze, long-chipping | < 850 N/mm² | E | 150 | 0,063 | 0,079 | 0,101 | 0,126 |
850-1200 N/mm² | E | 120 | 0,063 | 0,079 | 0,101 | 0,126 | |
Graphite | - | 90 | 0,072 | 0,089 | 0,107 | 0,125 |
Cutting values for roughing contour | |||||||
For dia. 10-20 | |||||||
Material designation | Tensile strength | Cooling | vc | fz | |||
Dia. 10-11.9 | Dia. 12-15.9 | Dia. 16-19.9 | Dia. 20 | ||||
Aluminium, aluminium alloys | < 530 N/mm² | E | 200 | 0,050 | 0,070 | 0,090 | 0,120 |
Aluminium, cast aluminium alloys < 10 % Si | < 600 N/mm² | E | 150 | 0,050 | 0,070 | 0,090 | 0,120 |
Aluminium, cast aluminium alloys > 10 % Si | < 600 N/mm131 | E | 120 | 0,050 | 0,070 | 0,090 | 0,120 |
Magnesium, magnesium alloys | < 280 N/mm² | E | 200 | 0,050 | 0,070 | 0,090 | 0,120 |
Copper, low-alloy | < 350 N/mm² | E | 150 | 0,050 | 0,070 | 0,090 | 0,120 |
Brass, short-chipping | < 600 N/mm² | - | 140 | 0,050 | 0,070 | 0,090 | 0,120 |
Brass, long-chipping | < 600 N/mm² | - | 140 | 0,050 | 0,070 | 0,090 | 0,120 |
Bronze, short-chipping | < 600 N/mm² | - | 140 | 0,050 | 0,070 | 0,090 | 0,120 |
650-850 N/mm² | - | 120 | 0,050 | 0,070 | 0,090 | 0,120 | |
Bronze, long-chipping | < 850 N/mm² | E | 120 | 0,050 | 0,070 | 0,090 | 0,120 |
850-1200 N/mm² | E | 95 | 0,050 | 0,070 | 0,090 | 0,120 | |
Graphite | - | 70 | 0,050 | 0,060 | 0,080 | 0,100 |
Cutting values for roughing contour | ||||||||
For dia. 1-9.9 | ||||||||
Material designation | Tensile strength | Cooling | vc | fz | ||||
Dia. 1-1.9 | Dia. 2-3.9 | Dia. 4-5.9 | Dia. 6-7.9 | Dia. 8-9.9 | ||||
Aluminium, aluminium alloys | < 530 N/mm² | E | 200 | 0,005 | 0,010 | 0,020 | 0,030 | 0,040 |
Aluminium, cast aluminium alloys < 10 % Si | < 600 N/mm² | E | 150 | 0,005 | 0,010 | 0,020 | 0,030 | 0,040 |
Aluminium, cast aluminium alloys > 10 % Si | < 600 N/mm131 | E | 120 | 0,005 | 0,010 | 0,020 | 0,030 | 0,040 |
Magnesium, magnesium alloys | < 280 N/mm² | E | 200 | 0,005 | 0,010 | 0,020 | 0,030 | 0,040 |
Copper, low-alloy | < 350 N/mm² | E | 150 | 0,005 | 0,010 | 0,020 | 0,030 | 0,040 |
Brass, short-chipping | < 600 N/mm² | - | 140 | 0,005 | 0,010 | 0,020 | 0,030 | 0,040 |
Brass, long-chipping | < 600 N/mm² | - | 140 | 0,005 | 0,010 | 0,020 | 0,030 | 0,040 |
Bronze, short-chipping | < 600 N/mm² | - | 140 | 0,005 | 0,010 | 0,020 | 0,030 | 0,040 |
650-850 N/mm² | - | 120 | 0,005 | 0,010 | 0,020 | 0,030 | 0,040 | |
Bronze, long-chipping | < 850 N/mm² | E | 120 | 0,005 | 0,010 | 0,020 | 0,030 | 0,040 |
850-1200 N/mm² | E | 95 | 0,005 | 0,010 | 0,020 | 0,030 | 0,040 | |
Graphite | - | 70 | 0,005 | 0,010 | 0,020 | 0,030 | 0,040 |
Cutting values for finishing contour | ||||||||
For dia. 1-9.9 | ||||||||
Material designation | Tensile strength | Cooling | vc | fz | ||||
Dia. 1-1.9 | Dia. 2-3.9 | Dia. 4-5.9 | Dia. 6-7.9 | Dia. 8-9.9 | ||||
Aluminium, aluminium alloys | < 530 N/mm² | E | 400 | 0,006 | 0,012 | 0,024 | 0,031 | 0,047 |
Aluminium, cast aluminium alloys < 10 % Si | < 600 N/mm² | E | 300 | 0,006 | 0,012 | 0,024 | 0,031 | 0,047 |
Aluminium, cast aluminium alloys > 10 % Si | < 600 N/mm² | E | 250 | 0,006 | 0,012 | 0,024 | 0,031 | 0,047 |
Magnesium, magnesium alloys | < 280 N/mm² | E | 400 | 0,006 | 0,012 | 0,024 | 0,031 | 0,047 |
Copper, low-alloy | < 350 N/mm² | E | 200 | 0,006 | 0,012 | 0,024 | 0,031 | 0,047 |
Brass, short-chipping | < 600 N/mm² | - | 180 | 0,006 | 0,012 | 0,024 | 0,031 | 0,047 |
Brass, long-chipping | < 600 N/mm² | - | 180 | 0,006 | 0,012 | 0,024 | 0,031 | 0,047 |
Bronze, short-chipping | < 600 N/mm² | - | 180 | 0,006 | 0,012 | 0,024 | 0,031 | 0,047 |
650-850 N/mm² | - | 150 | 0,006 | 0,012 | 0,024 | 0,031 | 0,047 | |
Bronze, long-chipping | < 850 N/mm² | E | 150 | 0,006 | 0,012 | 0,024 | 0,031 | 0,047 |
850-1200 N/mm² | E | 120 | 0,006 | 0,012 | 0,024 | 0,031 | 0,047 | |
Graphite | - | 90 | 0,007 | 0,014 | 0,020 | 0,027 | 0,054 |
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. |