10pc Kyocera TKN3 KW10 – Cut-Off Insert (Aluminium & Non-Ferrous Applications)
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Kyocera TKN3 KW10 – Cut-Off Insert (10 pcs Aluminium & Non-Ferrous Applications)
The Kyocera TKN3 KW10 is a precision-engineered cut-off insert designed for high-efficiency parting operations on non-ferrous materials such as aluminium, copper, and brass. It features a sharp cutting edge that delivers extremely low cutting resistance, reduced built-up edge, and excellent surface finish. Manufactured from uncoated micro-grain carbide (KW10), this insert ensures superb wear resistance and dimensional accuracy during continuous high-speed operations.
Key Features & Benefits
- KW10 Grade: Uncoated fine-grain carbide for non-ferrous machining, providing excellent sharpness and resistance to built-up edge.
- Sharp Cutting Edge: Ideal for aluminium and copper alloys, minimizing burr formation and ensuring mirror-like surface finishes.
- Low Cutting Force: Reduces spindle load and heat generation for longer tool life and superior dimensional control.
- Stable Performance: Reliable chip control and edge geometry for consistent cut-off quality at high speeds.
- Optimized for Light Rigid Tooling: Performs well on CNC lathes and automatic machines with limited rigidity.
Technical Specifications
- Designation / Order Code: TKN3 KW10
- Insert Type: Single-edge cut-off insert (TKN series)
- Material: Uncoated Micro-grain Carbide
- Grade: KW10
- Cutting Width (CW): 3.1 mm
- Relief Angle: Neutral (0°)
- Corner Radius (RE): 0.25 mm
- Recommended Cutting Speed (Vc): 200 – 500 m/min (Aluminium)
- Feed Rate (f): 0.02 – 0.08 mm/rev
- Application Range: Aluminium, Copper, Brass, Non-Ferrous Alloys
- Compatible Holders: KTKB / KTKH Series (page H72-H73)
- Pack Quantity: 10 pcs
About Kyocera KW10:
Kyocera’s KW10 carbide grade is optimized for non-ferrous machining. Its fine-grain substrate ensures razor-sharp cutting performance, superior surface finishes, and minimal adhesion. Ideal for high-speed cutting and precision finishing in aluminium and other soft metal applications.