Sandvik Coromant Carbide Corner Radius End Mills, Metric, TiAlN Finish, Roughing Cut, 50 Degree Helix, For Use With Cast Iron, Steel/Steel Alloys, Titanium/Titanium Alloys

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AZB00065UCG6
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Description

Sandvik Coromant Carbide Corner Radius End Mills, Metric, TiAlN Finish, Roughing Cut, 50 Degree Helix, For Use With Cast Iron, Steel/Steel Alloys, Titanium/Titanium Alloys
  • Solid carbide tools offer long tool life and faster cutting speeds than other substrates, but are more brittle and must be used with rigid toolholding systems
  • Titanium aluminum nitride coatings become self-lubricating when used at very high speeds, making them ideal for cutting without coolant ("dry machining")
  • Round shanks allow use with a wide variety of toolholding systems
  • Shank Style: Cylindrical
  • Geometry: P
  • Straight 9° to 12° General purpose 50% Core diameter
  • Gauge Length:
  • VFD
  • Solid carbide tools offer long tool life and faster cutting speeds than other substrates, but are more brittle and must be used with rigid toolholding systems
  • Titanium aluminum nitride coatings become self-lubricating when used at very high speeds, making them ideal for cutting without coolant ("dry machining")
  • Round shanks allow use with a wide variety of toolholding systems
  • Shank Style: Cylindrical
  • Geometry: P
  • Straight 9° to 12° General purpose 50% Core diameter
  • Gauge Length:
  • VFD
  • Solid carbide tools offer long tool life and faster cutting speeds than other substrates, but are more brittle and must be used with rigid toolholding systems
  • Titanium aluminum nitride coatings become self-lubricating when used at very high speeds, making them ideal for cutting without coolant ("dry machining")
  • Round shanks allow use with a wide variety of toolholding systems
  • Shank Style: Cylindrical
  • Geometry: P
  • Straight 9° to 12° General purpose 50% Core diameter
  • Gauge Length:
  • VFD
  • Solid carbide tools offer long tool life and faster cutting speeds than other substrates, but are more brittle and must be used with rigid toolholding systems
  • Titanium aluminum nitride coatings become self-lubricating when used at very high speeds, making them ideal for cutting without coolant ("dry machining")
  • Round shanks allow use with a wide variety of toolholding systems
  • Shank Style: Cylindrical
  • Geometry: P
  • Straight 9° to 12° General purpose 50% Core diameter
  • Gauge Length:
  • VFD
  • Solid carbide tools offer long tool life and faster cutting speeds than other substrates, but are more brittle and must be used with rigid toolholding systems
  • Titanium aluminum nitride coatings become self-lubricating when used at very high speeds, making them ideal for cutting without coolant ("dry machining")
  • Round shanks allow use with a wide variety of toolholding systems
  • Shank Style: Cylindrical
  • Geometry: P
  • Straight 9° to 12° General purpose 50% Core diameter
  • Gauge Length:
  • VFD
  • Solid carbide tools offer long tool life and faster cutting speeds than other substrates, but are more brittle and must be used with rigid toolholding systems
  • Titanium aluminum nitride coatings become self-lubricating when used at very high speeds, making them ideal for cutting without coolant ("dry machining")
  • Round shanks allow use with a wide variety of toolholding systems
  • Shank Style: Cylindrical
  • Geometry: P
  • Straight 9° to 12° General purpose 50% Core diameter
  • Gauge Length:
  • VFD
  • Solid carbide tools offer long tool life and faster cutting speeds than other substrates, but are more brittle and must be used with rigid toolholding systems
  • Titanium aluminum nitride coatings become self-lubricating when used at very high speeds, making them ideal for cutting without coolant ("dry machining")
  • Round shanks allow use with a wide variety of toolholding systems
  • Shank Style: Cylindrical
  • Geometry: P
  • Straight 9° to 12° General purpose 50% Core diameter
  • Gauge Length:
  • VFD
  • Solid carbide tools offer long tool life and faster cutting speeds than other substrates, but are more brittle and must be used with rigid toolholding systems
  • Titanium aluminum nitride coatings become self-lubricating when used at very high speeds, making them ideal for cutting without coolant ("dry machining")
  • Round shanks allow use with a wide variety of toolholding systems
  • Shank Style: Cylindrical
  • Geometry: P
  • Straight 9° to 12° General purpose 50% Core diameter
  • Gauge Length:
  • VFD
  • Solid carbide tools offer long tool life and faster cutting speeds than other substrates, but are more brittle and must be used with rigid toolholding systems
  • Titanium aluminum nitride coatings become self-lubricating when used at very high speeds, making them ideal for cutting without coolant ("dry machining")
  • Round shanks allow use with a wide variety of toolholding systems
  • Shank Style: Cylindrical
  • Geometry: P
  • Straight 9° to 12° General purpose 50% Core diameter
  • Gauge Length:
  • VFD
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