CCMT 32.52-EM COATED CARBIDE INSERT (6053-0222) (SKU: 6053-0222)
Semi-finishing geometry recommended for use with 300 Series stainless steels
- Single-side chipbreaker with M-class tolerance serves to reduce cutting force and workpiece adhesion when machining stainless steel. Possesses higher feed and depth of cut capability than EF chipbreaker
- ISO insert number is CCMT09T308EM
- I.C. is 3/8
- L is 3/8
- S is 5/32
- d is 0.17
- r is .0315
- For turning and milling carbon and alloy steels, tool steel and stainless steel
- Provides a longer life than uncoated grades
- Works well in high heat situations and offers wear resistance on alloys, stainless steel and ductile iron
- It is a combination of 2-4 um nc-TiAIN coating and ultra-fine carbide substrate of high strength and toughness
- It is suitable for milling from light to medium load and bore machining of all kinds of materials, turning of stainless steel from finishing to semi-finishing and roughing turning of high-temperature alloys
Specifications
- CCMT 32.52-EM 80 Degree Coated Carbide Insert
- I”.C”. is 3/8″.
- L is 3/8″.
- S is 5/32″.
- d is 0.17″.
- r is .0315″.
- ISO insert number is CCMT09T308EM.
- Single-side chipbreaker with M-class tolerance serves to reduce cutting force and workpiece adhesion when machining stainless steel.
- Possesses higher feed and depth of cut capability than EF chipbreaker.
- Grade XAF798 provides a combination of 2-4 um nc-TiAIN coating and ultra-fine carbide substrate of high strength and toughness.
- It is suitable for milling from light to medium load and bore machining of all kinds of materials, turning of stainless steel from finishing to semi-finishing and roughing turning of high-temperature alloys.
- Weight: 0.02
- Dimensions: L 3, W 1, H 6
Benefits
- Industrial-grade tooling designed for dependable shop performance.
- Supports consistent results when applied with correct setup practices.
- A practical choice for U.S. machine shops and maintenance work.
Recommended use
- Confirm compatibility (size, interface, machine capacity) before ordering.
- Follow safe operating practices and use appropriate PPE.
- Optimize setup rigidity and process parameters for best results.
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