WhizCut Original
threading
Threading for multiple applications
Upgrade your partial profile threading with WhizCut Original threading inserts. Our extensive selection of profiles is tailored to suit a wide range of applications, delivering the ideal threading tool and solution for every task.
Advantages of using WhizCut Original for threading
- Optimal relief angles: This makes the WhizCut Original threading inserts adaptable.
- Wide selection: Many options with diverse profiles for different applications.
- Thread behind a shoulder: Use the TS-type inserts.
Optimal relief angles and versatility for precision threading
The WhizCut Original K-type system’s insert pocket seat automatically provides the threading inserts with optimal relief angles. The additional clearance makes these threading inserts highly versatile, allowing them to produce threads that regular inserts cannot reach.
The TS-type threading inserts enable threading behind a shoulder with up to a 20 mm difference between the screw head diameter and the minor diameter, while maintaining a minimal distance from the shoulder to the first thread.
WhizCut Original threading inserts are available in various radiuses. When selecting a partial profile threading insert, consider maximizing the radius for optimal performance and extended tool life in high-performance threading.
More about K-type turning
WhizCut Original K-type inserts are versatile tools used for back turning, threading, grooving, and parting off. WhizCut offers an extensive range of these inserts, ensuring you always have the perfect tool for your specific application.
Designed with a slight tilt in the tool holder, K-type inserts provide excellent clearance and maximum stability. This design ensures that the cutting force is optimally supported by the holder, enhancing performance and precision.
The unique combination of relief angles and a stable insert pocket seat makes the K-type system ideal for use in Swiss-type lathes.
WhizCut Original K-type inserts and tool holders are engineered for optimal performance in:
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