Kennametal CNMG-FP Carbide Insert
High-Performance Turning Insert for Finishing & Medium Machining
The Kennametal CNMG-FP Carbide Insert is a premium-grade negative turning insert engineered for high-precision finishing and medium machining applications. Designed with advanced cobalt-enriched carbide substrate and a multi-layer MTCVD coating system (TiCN–Al2O3–TiOCN), this insert delivers outstanding wear resistance, excellent thermal stability, and superior cutting performance. It is specially developed for machining steel, stainless steel (ferritic, martensitic, PH grades), and cast iron materials with consistent accuracy and smooth surface finish. The FP chipbreaker geometry ensures controlled chip flow, reduced cutting forces, and improved surface quality, making it ideal for high-speed CNC machining operations.
Product Specifications
| Parameter | Details |
|---|---|
| Product Name | Kennametal CNMG-FP Carbide Insert |
| Brand | Kennametal |
| Grade | KCP10B |
| Workpiece Material | P – Steel |
| Insert Type | Negative Insert |
| Insert Shape | CNMG-FP |
| Insert Size (IC) | 12.7 mm |
| Thickness | 4.76 mm |
| Coating Type | CVD (MTCVD Multi-layer) |
| Chipbreaker | Medium |
| Relief Angle | N (0°) |
| Application | Finishing & Medium Machining |
| Condition | New |
Benefits of CNMG-FP Insert
The CNMG-FP insert enhances machining productivity by delivering stable cutting performance, reduced tool wear, and improved surface finish quality. Its advanced coating technology protects against high-temperature wear and crater formation, making it suitable for continuous production environments. The cobalt-enriched substrate provides a balanced combination of toughness and hardness, ensuring long tool life and consistent machining accuracy. It also helps reduce downtime and overall tooling costs.
Why Choose Kennametal CNMG-FP?
The Kennametal CNMG-FP insert offers an ideal combination of advanced coating technology, strong carbide substrate, and precision chip control geometry. It delivers exceptional surface finish, longer tool life, and consistent machining performance, making it a reliable choice for modern CNC machining and high-efficiency production environments.