Kennametal
Kennametal EP1408SGD KC725M Carbide Milling Insert (5 Pack)
Kennametal EP1408SGD KC725M Carbide Milling Insert (5 Pack)
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High-performance EP1408SGD carbide milling insert with KC725M grade.
Designed for reliable performance in milling applications, the EP1408SGD with Kennametal’s KC725M grade provides excellent wear resistance, thermal shock resistance, and stable cutting performance. The SGD / GD geometry is designed for medium machining conditions, helping deliver smooth cutting action, reliable chip control, and dependable tool life in production milling environments.
KC725M is an advanced PVD TiAlN-coated carbide grade designed for milling steel, stainless steel, and high-temperature alloys. It is suitable for both wet and dry machining and is primarily used in general and heavy machining applications.
- Genuine Kennametal Product
- In Stock – Ships from USA
- Pack of 5 Inserts
- Fast Shipping (1–3 Business Days)
Specifications
Manufacturer: Kennametal
Insert Style: EP1408SGD
ISO Code: EDPT140408PDSRGD
Grade: KC725M
Chipbreaker / Geometry: SGD / GD
Application: Medium Machining
Workpiece Material: Steel, Stainless Steel, Superalloys & Titanium
Coating: PVD TiAlN-Coated Carbide
Insert Shape: Parallelogram Milling Insert
Insert Length: 0.6879" / 17.472 mm
Cutting Edge Length: 0.6017" / 15.283 mm
Insert Width: 0.3295" / 8.37 mm
Insert Thickness: 0.1772" / 4.5 mm
Corner Radius: 0.031" / 0.8 mm
Number of Cutting Edges: 2
Quantity: 5 Inserts per Pack
Recommended For
Shoulder milling
Face milling
General CNC milling
Steel and stainless steel machining
High-temperature alloy machining
Medium machining conditions
Wet and dry machining
Production machining requiring stable tool life
Why Choose KC725M?
Excellent wear resistance in milling applications
Good thermal shock resistance for wet and dry machining
Stable performance in steel and stainless steel
Suitable for high-temperature alloy machining
PVD TiAlN coating helps improve tool life and cutting stability
SGD / GD geometry supports smooth cutting and dependable chip control
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