10 pc Kyocera CNMG120408HQ CA125P – Turning Insert (Finishing to Medium, HQ Chipbreaker)
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Kyocera CNMG120408HQ CA125P – Turning Insert (10 pcs Finishing to Medium, HQ Chipbreaker)
The Kyocera CNMG120408HQ CA125P is a high-performance negative-type rhombic turning insert designed for finishing to medium machining of steels. It utilizes Kyocera’s advanced HQ chipbreaker, engineered to provide smooth chip control, reduced cutting resistance, and stable cutting under varying feed conditions. Manufactured using the CA125P MEGACOAT TOUGH CVD-coated carbide grade, this insert delivers superior wear resistance, heat stability, and consistent tool life, ensuring precision and reliability in both continuous and light interrupted operations.
Key Features & Benefits
- CA125P Grade – MEGACOAT TOUGH: CVD-coated carbide optimized for steel turning with high wear and heat resistance.
- HQ Chipbreaker: Finishing to medium geometry that provides smooth chip evacuation and stable edge formation.
- Stable Machining: Maintains edge sharpness and dimensional accuracy under high cutting loads.
- High Efficiency: Excellent cutting balance ensures reduced forces and improved surface quality.
- Versatile Application: Suitable for both continuous and lightly interrupted turning of carbon and alloy steels.
Technical Specifications
- Designation / Order Code: CNMG120408HQ CA125P
- Insert Shape: 80° Rhombic (C Type, Negative)
- Insert Type: Double-Sided Negative Turning Insert
- Material: CVD-Coated Carbide
- Grade: CA125P – MEGACOAT TOUGH (CVD)
- Chipbreaker: HQ – Finishing to Medium Range
- Inscribed Circle (IC): 12.70 mm
- Thickness (S): 4.76 mm
- Hole Diameter (D1): 5.16 mm
- Corner Radius (RE): 0.8 mm
- Relief Angle: 0° (Negative Type)
- Cutting Depth (ap): 0.2 – 3.0 mm
- Feed Rate (f): 0.1 – 0.45 mm/rev
- Tolerance (Class M): ±0.025 mm (thickness) / ±0.13 mm (corner height)
- Pack Quantity: 10 pcs
About Kyocera CA125P:
Kyocera’s CA125P MEGACOAT TOUGH CVD-coated carbide combines a wear-resistant coating with a tough substrate for stable performance in steel machining. It ensures excellent chip control, consistent surface finishes, and long tool life, making it ideal for finishing to medium turning applications in carbon and alloy steels.