TUS SERIES (for TITANIUM Alloy, Inconel Alloy) CARBIDE END MILL
TUS SERIES (for TITANIUM Alloy, Inconel Alloy) CARBIDE END MILL - is backordered and will ship as soon as it is back in stock.
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Delivery and Shipping
Delivery and Shipping
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Shipment processing time
All orders are processed within 2-3 business days. Orders are not shipped or delivered on weekends or holidays.
If we are experiencing a high volume of orders, shipments may be delayed by a few days. Please allow additional days in transit for delivery. If there will be a significant delay in shipment of your order, we will contact you via email or telephone.
Shipment to Pin Codes
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Shipment confirmation & Order tracking
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Damages
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Description
Description
The TUS Series End Mill is a high-performance solid carbide cutting tool specially engineered for machining titanium alloys, Inconel, heat-resistant alloys, and austenitic stainless steels. Designed with advanced flute geometry and premium micro-grain carbide, the TUS series delivers exceptional cutting stability, superior wear resistance, and extended tool life in demanding machining applications.
Available in both 4-Flute Corner Radius (4R) and 5-Flute Flat/Square End Mill (5R) configurations, the TUS series is optimized for roughing, semi-finishing, and finishing operations. The variable helix design helps reduce vibration and chatter, ensuring smoother cutting action, improved surface finish, and enhanced dimensional accuracy. The corner radius version provides additional edge strength, minimizing chipping during heavy cutting and high-feed operations.
The special coating technology improves heat resistance and reduces friction, allowing efficient machining at higher cutting speeds while maintaining excellent tool durability. The TUS series is suitable for slotting, profiling, side milling, contouring, and cavity machining in aerospace, medical, automotive, mold & die, and precision engineering industries.
With a wide range of diameters and lengths, the TUS Series offers versatility for various machining requirements. Its combination of rigidity, precision, and high metal removal capability makes it an ideal solution for manufacturers seeking reliable performance and maximum productivity when machining difficult-to-cut materials, particularly titanium alloys and superalloys.








