TungEight-Mill

product_Milling_TungEight-Mill

Economical 8 edged inserts with light cutting face milling cutter

Light cutting & optimal chip forming insert featuring 8 cutting edges with high positive rake angle

Applications & Features

Face milling

1. High positive rake face mill

• Inserts with a high positive rake provide light cutting actions.

 

2. Three types of inserts are available

3. Designed to ensure machining stability

• Ideal chip forming.
• Better insert reliability with double flank relief.

Inserts & Grades

Inserts

OW*T05T3

  • Maximum depth of cut: 3 mm
Grades

AH120

  • Good balance between wear and fracture resistance
  • Suitable for machining steel, stainless steel, and cast iron under general cutting conditions

AH3135

  • High fracture resistance
  • Suitable for machining steel and stainless steel under general cutting conditions

Cutter bodies

Bore Type

TAOW05 (ø50– ø160 mm)

Bore type for face milling

Practical examples

Part: Part for semiconductor equipment
Material: EN 1.4301
Cutter: TAOW05M063B22.0R05
Insert: OWHT05T3C07AFER-MM
Grade: AH3135
Cutting conditions: Vc = 160 (m/min)
fz = 0.2 (mm/t)
Vf = 808 (mm/min)
ap = 1.6 (mm)
ae = 19 (mm)
Application: Face Milling
Coolant: External supply
Machine: Vertical M/C (BT40)
Part: Base
Material: ISO E275A
Cutter: TAOW05J100B31.7R06
Insert: OWHT05T3C07AFER-MM
Grade: AH3135
Cutting conditions: Vc = 220 (m/min)
fz = 0.2 (mm/t)
Vf = 840 (mm/min)
ap = 2 (mm)
ae = 100 (mm)
Application: Face Milling
Coolant: External supply
Machine: Vertical M/C
Part: Machine part
Material: EN 1.7225
Cutter: TAOW05M063B22.0R05
Insert: OWMT05T3AFER-MM
Grade: AH3135
Cutting conditions: Vc = 150 (m/min)
fz = 0.26 (mm/t)
Vf = 1000 (mm/min)
ap = 2.6 (mm)
ae = 18 (mm)
Application: Face Milling
Coolant: Internal supply
Machine: Vertical M/C (BT40)

Standard cutting conditions

ISO Workpiece material Hardness Priority Grade Chip-breaker Cutting speed
Vc (m/min)
Feed per tooth
fz (mm/t)
Low carbon steel
(C15, etc.)
– 200HB First choice AH3135 MM 100 – 300 0.05 – 0.35
Wear resistance AH120 MM 100 – 300 0.05 – 0.35
High carbon and alloy steel
(S55C / C55, SCM440 / 42CrMo4, etc.)
– 300HB First choice AH3135 MM 100 – 250 0.05 – 0.3
Wear resistance AH120 MM 100 – 250 0.05 – 0.3
Prehardened steel
(NAK80, PX5, etc.)
30 – 40 HRC First choice AH3135 MM 80 – 200 0.05 – 0.3
Wear resistance AH120 MM 80 – 200 0.05 – 0.3
Austenitic stainless steel
(SUS304 / 1.4301, SUS316 / 1.4401, etc.)
– 200HB First choice AH3135 MM 100 – 200 0.05 – 0.35
Wear resistance AH120 MM 100 – 200 0.05 – 0.35
Martensitic stainless steel
( X20Cr13, etc.)
– 220HB First choice AH3135 MM 100 – 300 0.05 – 0.3
Wear resistance AH120 MM 100 – 300 0.05 – 0.3
Gray cast iron
(FC250 / 250, etc.)
150 – 250HB First choice AH120 MM 100 – 300 0.05 – 0.35
Fracture resistance AH3135 MM 100 – 300 0.05 – 0.35
Ductile cast iron
(FCD400 / 400-15, FCD600 / 600-3, etc.)
150 – 250HB First choice AH120 MM 80 – 250 0.05 – 0.3
Fracture resistance AH3135 MM 80 – 250 0.05 – 0.3
Titanium alloys
(Ti-6AI-4V, etc.)
First choice AH3135 MM 30 – 60 0.05 – 0.2
Wear resistance AH120 MM 30 – 60 0.05 – 0.2
Heat-resistant alloys
(Inconel718, etc.)
First choice AH120 MM 20 – 50 0.05 – 0.15
Fracture resistance AH3135 MM 20 – 50 0.05 – 0.15
Hardened steel
(SKD61 / X40CrMoV51, etc.)
40 – 50HRC First choice AH3135 MM 70 – 130 0.05 – 0.15
Wear resistance AH120 MM 70 – 130 0.05 – 0.15

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