Product Similar To:
HARVI™ I • Taper Ball Nose • 4 Flutes • Plain Shank • Metric
HARVI™ I Solid Carbide End Mill for Roughing and Finishing of Multiple Materials
Material Number2627513
ISO Catalog IDF4AW0400AWL38W040ANSI Catalog IDF4AW0400AWL38W040
- P Steel
- M Stainless Steel
- S High-Temp Alloys
- H Hardened Materials
Side Milling/Shoulder Milling: Ball Nose
3D Profiling
Tool Dimensions: Flute Configuration: 4
Helix Angle: 38°
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Material Number | 2627513 |
ISO Catalog ID | F4AW0400AWL38W040 |
ANSI Catalog ID | F4AW0400AWL38W040 |
Grade | KC633M |
Adapter Style Machine Side | Straight-Cylindrical |
[D1] Effective Cutting Diameter | 4 mm |
[D1] Effective Cutting Diameter | 0.1575 in |
[D] Adapter / Shank / Bore Diameter | 8 mm |
[D] Adapter / Shank / Bore Diameter | 0.315 in |
[D3] Neck Diameter | 8 mm |
[D3] Neck Diameter | 0.315 in |
[AP1MAX] 1st Maximum Cutting Depth | 30.5 mm |
[AP1MAX] 1st Maximum Cutting Depth | 1.2008 in |
[L3] Usable Length | 36 mm |
[L3] Usable Length | 1.4173 in |
[L] Overall Length | 76 mm |
[L] Overall Length | 2.9921 in |
[R] Profile or Ball Nose Radii | 2 mm |
[R] Profile or Ball Nose Radius | 0.079 in |
[Z] Number of Flutes | 4 |
Workpiece Materials
- Steel
- Stainless Steel
- High-Temp Alloys
- Hardened Materials
Uses and application
Side Milling/Shoulder Milling: Ball Nose
3D Profiling
Tool Dimensions: Flute Configuration: 4
Helix Angle: 38°
Grades
KC633M
Coated carbide grade with PVD multilayer coating. KC633M™ is designed for dry milling most types of material, apart from the hardened variety. This grade is characterized by high hardness and wear resistance. It provides outstanding protection for solid carbide tools against cratering and abrasion.
Features and benefits
- Versatile solid carbide end mill for steels, stainless steel, and high temperature alloys.
- HARVI™ I solid carbide end mills cover a variety of operations, including dynamic milling.
- HARVI™ I solid carbide end mills features unequal flute spacing for chatter-free machining.
- Centre cutting for plunging and ramping operations.
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Application Data
HARVI I • F4AW..AWL38-WX38 • Unequal Flute Spacing • Taper Ball Nose • Roughing
Side Milling (A) | KC633M | Recommended feed per tooth (fz = mm/th) for side milling (A). | ||||||||||
Cutting Speed | D1 | |||||||||||
Material | ap | ae | Min | Max | mm | 4,0 | 5,0 | 6,0 | 8,0 | 10,0 | ||
P | 0 | Ap max | 0,4 x D | 150 | – | 200 | fz | 0,028 | 0,036 | 0,044 | 0,060 | 0,072 |
1 | Ap max | 0,4 x D | 150 | – | 200 | fz | 0,028 | 0,036 | 0,044 | 0,060 | 0,072 | |
2 | Ap max | 0,4 x D | 140 | – | 190 | fz | 0,028 | 0,036 | 0,044 | 0,060 | 0,072 | |
3 | Ap max | 0,4 x D | 120 | – | 160 | fz | 0,023 | 0,030 | 0,036 | 0,050 | 0,061 | |
4 | Ap max | 0,4 x D | 90 | – | 150 | fz | 0,021 | 0,027 | 0,033 | 0,045 | 0,054 | |
5 | Ap max | 0,4 x D | 60 | – | 100 | fz | 0,019 | 0,024 | 0,029 | 0,040 | 0,048 | |
6 | Ap max | 0.4 x D | 50 | – | 75 | fz | 0,016 | 0,020 | 0,025 | 0,034 | 0,040 | |
M | 1 | Ap max | 0,4 x D | 90 | – | 115 | fz | 0,023 | 0,030 | 0,036 | 0,050 | 0,061 |
2 | Ap max | 0,4 x D | 60 | – | 80 | fz | 0,019 | 0,024 | 0,029 | 0,040 | 0,048 | |
3 | Ap max | 0,4 x D | 60 | – | 70 | fz | 0,016 | 0,020 | 0,025 | 0,034 | 0,040 | |
S | 1 | Ap max | 0,4 x D | 50 | – | 90 | fz | 0,023 | 0,030 | 0,036 | 0,050 | 0,061 |
2 | Ap max | 0,4 x D | 25 | – | 40 | fz | 0,013 | 0,016 | 0,019 | 0,026 | 0,032 | |
3 | Ap max | 0,4 x D | 25 | – | 40 | fz | 0,013 | 0,016 | 0,019 | 0,026 | 0,032 | |
4 | Ap max | 0,4 x D | 50 | – | 60 | fz | 0,016 | 0,021 | 0,026 | 0,037 | 0,045 | |
H | 1 | Ap max | 0,4 x D | 80 | – | 140 | fz | 0,021 | 0,027 | 0,033 | 0,045 | 0,054 |
HARVI I • F4AW...AWL38-WX38 • Unequal Flute spacing • Taper Ball Nose • Finishing
Side Milling (A) | KC633M | Recommended feed per tooth (fz = mm/th) for side milling (A). | ||||||||||
A | Cutting Speed | D1 | ||||||||||
Material | ap | ae | Min | Max | mm | 4,0 | 5,0 | 6,0 | 8,0 | 10,0 | ||
P | 0 | Ap max | 0,06 x D | 285 | – | 380 | fz | 0,034 | 0,043 | 0,053 | 0,072 | 0,086 |
1 | Ap max | 0,06 x D | 285 | – | 380 | fz | 0,034 | 0,043 | 0,053 | 0,072 | 0,086 | |
2 | Ap max | 0,06 x D | 266 | – | 361 | fz | 0,034 | 0,043 | 0,053 | 0,072 | 0,086 | |
3 | Ap max | 0,06 x D | 228 | – | 304 | fz | 0,028 | 0,036 | 0,044 | 0,060 | 0,073 | |
4 | Ap max | 0,06 x D | 171 | – | 285 | fz | 0,026 | 0,033 | 0,039 | 0,054 | 0,065 | |
5 | Ap max | 0,06 x D | 114 | – | 190 | fz | 0,023 | 0,029 | 0,035 | 0,048 | 0,058 | |
4 | Ap max | 0,06 x D | 95 | – | 142,5 | fz | 0,019 | 0,024 | 0,030 | 0,040 | 0,048 | |
M | 1 | Ap max | 0,06 x D | 171 | – | 218,5 | fz | 0,028 | 0,036 | 0,044 | 0,060 | 0,073 |
2 | Ap max | 0,06 x D | 114 | – | 152 | fz | 0,023 | 0,029 | 0,035 | 0,048 | 0,058 | |
3 | Ap max | 0,06 x D | 114 | – | 133 | fz | 0,019 | 0,024 | 0,030 | 0,040 | 0,048 | |
S | 1 | Ap max | 0,06 x D | 95 | – | 171 | fz | 0,028 | 0,036 | 0,044 | 0,060 | 0,073 |
2 | Ap max | 0,06 x D | 47,5 | – | 76 | fz | 0,015 | 0,019 | 0,023 | 0,032 | 0,038 | |
3 | Ap max | 0,06 x D | 47,5 | – | 76 | fz | 0,015 | 0,019 | 0,023 | 0,032 | 0,038 | |
4 | Ap max | 0,06 x D | 95 | – | 114 | fz | 0,019 | 0,025 | 0,031 | 0,044 | 0,053 | |
H | 1 | Ap max | 0,06 x D | 152 | – | 266 | fz | 0,026 | 0,033 | 0,039 | 0,054 | 0,065 |
Tolerance
End Mill Tolerances | |||
D1 | tolerance e8 | D | tolerance h6 + / - |
≤3 | -0,014/-0,028 | ≤3 | +0/-0,006 |
-0,020/-0,038 | +0/-0,008 | ||
-0,025/-0,047 | +0/-0,009 | ||
-0,032/-0,059 | +0/-0,011 | ||
-0,040/-0,073 | +0/-0,013 |
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