10pc Kyocera DCMT070204HQ CA025P – Turning Insert (Finishing to Medium, HQ Chipbreaker)
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Kyocera DCMT070204HQ CA025P – Turning Insert (10 pcs Finishing to Medium, HQ Chipbreaker)
The Kyocera DCMT070204HQ CA025P is a precision-engineered positive-type rhombic turning insert designed for finishing to medium machining of steels. It features the HQ chipbreaker geometry, optimized for smooth chip evacuation, low cutting resistance, and stable surface quality under varying feed conditions. Manufactured with Kyocera’s CA025P CVD-coated carbide grade utilizing MEGACOAT TOUGH technology, this insert offers an excellent balance of wear resistance, thermal stability, and toughness, ideal for continuous and lightly interrupted cutting.
Key Features & Benefits
- CA025P Grade – MEGACOAT TOUGH: CVD-coated carbide with exceptional wear resistance and strength for stable steel turning.
- HQ Chipbreaker: Designed for finishing to medium operations, providing superior chip control and reduced cutting load.
- Excellent Surface Quality: Minimizes built-up edge and vibration for smooth and accurate finishes.
- Thermal Stability: Maintains consistent cutting edge integrity under both dry and wet machining conditions.
- Reliable Performance: Ideal for continuous or light interrupted cuts on carbon and alloy steels.
Technical Specifications
- Designation / Order Code: DCMT070204HQ CA025P
- Insert Shape: 55° Rhombic (D Type)
- Insert Type: Positive Turning Insert
- Material: CVD-Coated Carbide
- Grade: CA025P – MEGACOAT TOUGH (CVD)
- Chipbreaker: HQ – Finishing to Medium Geometry
- Inscribed Circle (IC): 6.35 mm
- Thickness (S): 2.38 mm
- Hole Diameter (D1): 2.8 mm
- Corner Radius (RE): 0.4 mm
- Relief Angle: 7°
- Recommended Cutting Depth (ap): 0.1 – 2.0 mm
- Feed Rate (f): 0.05 – 0.25 mm/rev
- Pack Quantity: 10 pcs
About Kyocera CA025P:
Kyocera’s CA025P MEGACOAT TOUGH grade is optimized for steel turning applications that demand high performance and durability. It offers outstanding tool life, reliable cutting under tough conditions, and consistent results with minimized edge wear.