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Superalloys Milling
Superalloys Milling
Superalloys Milling
Superalloys Milling
Superalloys Milling
Superalloys Milling
Superalloys Milling
Superalloys Milling
Superalloys Milling
Superalloys Milling
Superalloys Milling
Superalloys Milling
Superalloys Milling
Superalloys Milling
Superalloys Milling

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.

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End Mills
Cod. 641

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.

End Mills
Cod. 641F

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.

End Mills
Cod. 642

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.

End Mills
Cod. 642F

Z=4 Torus Radius End Mill with Internal Coolant for Nickel

Fresa a 4 taglienti con raggio torico per leghe di nickel, progettata per ottimizzare la vita utile del tagliente e garantire un'elevata stabilità di lavoro.

Il rivestimento in PVD Zirconio (Cer-Ni) abbinato ai fori di refrigerazione interna assicurano un'ottima gestione del calore nella zona di taglio.

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