Sandvik Coromant 8194354 CoroCut® 2 Cutting Tool Turning Insert, ANSI Code: C2I-G2N-0300-0003-TF1225, C2I Insert, G2 Insert, G Seat, Neutral Cutting, For Use On Steel/Stainless Steel/Cast Iron/Non-Ferrous Metal/Super-Alloys/Titanium, Carbide

7323226541663 MFG #: 8194354
Requires Quote
  • ANSI Code: C2I-G2N-0300-0003-TF1225
  • Chipbreaker: TF
  • Corner Radius: 0.3 mm
  • Cutting Direction: Neutral
  • Finish: PVD-TiAlN+TiAlSiN+TiSiN Coated
  • For Use On: Steel/Stainless Steel/Cast Iron/Non-Ferrous Metal/Super-Alloys/Titanium
  • Insert Size: G2
  • Insert Style: C2I
  • ISO Code: C2I-G2N-0300-0003-TF1225
  • Length: 19.72 mm
  • Manufacturer Name: Sandvik Coromant
  • Manufacturer's Grade: 1225
  • Material: Carbide
  • Material Grade: K, M, N, P, S
  • Maximum Depth of Cut: 1.8 mm
  • Request For Quote: Yes
  • Seat Size: G
  • Series: CoroCut® 2
  • Thickness: 4.33 mm
  • Type: Cutting Tool
  • Width: 3 mm
Sandvik Coromant, 8194354, Turning Insert, Cutting Tool, Series: CoroCut® 2, C2I Insert, G2 Insert, 1.8 mm Maximum Depth of Cut, 4.33 mm Thickness, 3 mm Width, 19.72 mm Length, G Seat, TF Chipbreaker, 0.3 mm Corner Radius, Manufacturer's Grade: 1225, ANSI Code: C2I-G2N-0300-0003-TF1225, ISO Code: C2I-G2N-0300-0003-TF1225, Neutral Cutting Direction, Carbide, PVD-TiAlN+TiAlSiN+TiSiN Coated, For Use On: Steel/Stainless Steel/Cast Iron/Non-Ferrous Metal/Super-Alloys/Titanium,
QTY
  • Standards
  • Item Features
ISO C2I-G2N-0300-0003-TF1225|ANSI C2I-G2N-0300-0003-TF1225
  • Grades for a wide range of workpiece materials
  • Tool holders available for all common machines
  • First choice for cost-efficient machining in applications where it is possible to use two-edged inserts
  • Two edges provide more tool life per insert compared to one-edged concepts designed for one specific application
  • Process security and productivity are crucial in parting and grooving, the correct set-up and choice of tools prevent problems from arising
  • The wide offer of geometries and tools with precision coolant makes it possible to optimize for different machining conditions