Superalloys Milling
Designed for the challenges of heat-resistant superalloys (such as Inconel, titanium, and austenitic stainless steels), these end mills combine a tough carbide substrate with high-thermal-resistance coatings. This synergy counters work hardening and dissipates high operating temperatures.
The optimized cutting-edge geometry ensures maximum stability, reduces thermal shock, and significantly extends tool life even under the most demanding cutting conditions.
- Close
Z=4 Torus Radius End Mill for Titanium
Z=4 torus radius end mill engineered to optimize tool life when machining titanium. Its specific geometry guarantees high working stability while preserving cutting-edge integrity.
The PVD Zirconium (Cer-Ni) coating ensures excellent resistance to high cutting temperatures.
Z=4 Torus Radius End Mill with Internal Coolant for Titanium
Z=4 torus radius end mill engineered to optimize tool life when machining titanium. Its specific geometry guarantees high working stability.
The PVD Zirconium (Cer-Ni) coating ensures excellent resistance to high cutting temperatures.
Z=4 Torus Radius End Mill for Nickel
Z=4 torus radius end mill engineered to optimize tool life when machining nickel alloys. Its specific geometry guarantees high working stability while preserving cutting-edge integrity.
The PVD Zirconium (Cer-Ni) coating ensures excellent resistance to high cutting temperatures.
Z=4 Torus Radius End Mill with Internal Coolant for Nickel
Z=4 torus radius end mill engineered to optimize tool life when machining nickel alloys. Its specific geometry guarantees high working stability.
The PVD Zirconium (Cer-Ni) coating ensures excellent resistance to high cutting temperatures.