HSCo slitting milling cutter double cut type H
Slitting milling cutter HSCo Z24-48 10-15° ty. H
METCRCLMILMA-WN-HSCO-D125X4,0MM
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Datasheets(X)
![]() | |
Product code | 3224 |
Material to be processed | Steel, Cast metal, Stainless steel, Titanium, Copper, Brass |
Diameter (d1 (js16)) | 125 mm |
Cutting width (b) | 4 |
Bore diameter (d2 (H7)) | 32 mm |
Number of cutting edges (Z) | 40 PCS |
Cutting material | HSCo |
Twist angle | 10-15° |
Surface | Plain |
Tolerance of cutting edge diameter | js16 |
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 |
Cutting values for finishing contour | ||||||||
For dia. 50 to dia. 160 | ||||||||
Material designation | Tensile strength | Cooling | vc | fz | ||||
Dia. 50 | Dia. 63 | Dia. 80 | Dia. 100 | Dia. 125-160 | ||||
General structural steels | < 500 N/mm² | E | 45 | 0,035 | 0,042 | 0,049 | 0,056 | 0,063 |
500-850 N/mm² | E | 38 | 0,031 | 0,037 | 0,043 | 0,050 | 0,056 | |
Carbon steels | < 850 N/mm² | E | 38 | 0,025 | 0,030 | 0,035 | 0,040 | 0,045 |
850-1000 N/mm² | E | 30 | 0,025 | 0,030 | 0,035 | 0,040 | 0,045 | |
Unalloyed heat-treated steels | < 700 N/mm² | E | 38 | 0,025 | 0,030 | 0,035 | 0,040 | 0,045 |
700-850 N/mm² | E | 38 | 0,025 | 0,030 | 0,035 | 0,040 | 0,045 | |
850-1000 N/mm² | E | 30 | 0,025 | 0,030 | 0,035 | 0,040 | 0,045 | |
Alloyed heat-treated steels | 850-1000 N/mm² | E | 30 | 0,025 | 0,030 | 0,035 | 0,040 | 0,045 |
1000-1200 N/mm² | E | 25 | 0,028 | 0,034 | 0,039 | 0,045 | 0,050 | |
Unalloyed case-hardening steels | < 750 N/mm² | E | 38 | 0,025 | 0,030 | 0,035 | 0,040 | 0,045 |
Alloyed case-hardening steels | < 1000 N/mm² | E | 30 | 0,025 | 0,030 | 0,035 | 0,040 | 0,045 |
1000-1200 N/mm² | E | 25 | 0,028 | 0,034 | 0,039 | 0,045 | 0,050 | |
Nitriding steels | < 1000 N/mm² | E | 30 | 0,025 | 0,030 | 0,035 | 0,040 | 0,045 |
1000-1200 N/mm² | E | 25 | 0,028 | 0,034 | 0,039 | 0,045 | 0,050 | |
Tool steels | < 850 N/mm² | E | 38 | 0,025 | 0,030 | 0,035 | 0,040 | 0,045 |
850-1100 N/mm² | E | 25 | 0,028 | 0,034 | 0,039 | 0,045 | 0,050 | |
1100-1400 N/mm² | E | 20 | 0,028 | 0,034 | 0,039 | 0,045 | 0,050 | |
High-speed steels | 850-1200 N/mm² | E | 20 | 0,028 | 0,034 | 0,039 | 0,045 | 0,050 |
Wear-resistant constructional steel | 1350 N/mm² | E | 15 | 0,028 | 0,034 | 0,039 | 0,045 | 0,050 |
Spring steels | < 1200 N/mm² | E | 15 | 0,028 | 0,034 | 0,039 | 0,045 | 0,050 |
Stainless steels, sulphurated | < 700 N/mm² | E | 38 | 0,025 | 0,030 | 0,035 | 0,040 | 0,045 |
Stainless steels, austenitic | < 700 N/mm² | E | 38 | 0,025 | 0,030 | 0,035 | 0,040 | 0,045 |
< 850 N/mm² | E | 30 | 0,025 | 0,030 | 0,035 | 0,040 | 0,045 | |
Stainless steels, martensitic | < 1100 N/mm² | E | 25 | 0,028 | 0,034 | 0,039 | 0,045 | 0,050 |
Special alloys | < 1200 N/mm² | E | 15 | 0,028 | 0,034 | 0,039 | 0,045 | 0,050 |
Cast iron | < 180 HB | - | 38 | 0,025 | 0,030 | 0,035 | 0,040 | 0,045 |
> 180 HB | - | 30 | 0,025 | 0,030 | 0,035 | 0,040 | 0,045 | |
Nodular graphite, malleable iron | > 180 HB | - | 30 | 0,025 | 0,030 | 0,035 | 0,040 | 0,045 |
> 260 HB | E | 25 | 0,025 | 0,030 | 0,035 | 0,040 | 0,045 | |
Titanium, titanium alloys | < 850 N/mm² | E | 20 | 0,028 | 0,034 | 0,039 | 0,045 | 0,050 |
Copper, low-alloy | < 350 N/mm² | E | 120 | 0,046 | 0,055 | 0,064 | 0,074 | 0,083 |
Brass, short-chipping | < 600 N/mm² | - | 100 | 0,046 | 0,055 | 0,064 | 0,074 | 0,083 |
Brass, long-chipping | < 600 N/mm² | - | 100 | 0,046 | 0,055 | 0,064 | 0,074 | 0,083 |
Bronze, short-chipping | < 600 N/mm² | - | 100 | 0,046 | 0,055 | 0,064 | 0,074 | 0,083 |
650-850 N/mm² | - | 80 | 0,046 | 0,055 | 0,064 | 0,074 | 0,083 | |
Bronze, long-chipping | < 850 N/mm² | E | 80 | 0,046 | 0,055 | 0,064 | 0,074 | 0,083 |
850-1200 N/mm² | E | 65 | 0,050 | 0,060 | 0,070 | 0,080 | 0,090 |
Legend | |
E = emulsion | |
vc = cutting speed [m/min] | |
fz = feed per tooth [mm/t] | |
The suggested cutting values are reference values and must be adapted to the respective conditions. |