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1"Ø x 1.5" LOC x 4" OAL- Square End - Uncoated - A340 3F Carbide Variable End Mill
Flutes: 3Cutting Diameter: 1"Length of Cut: 1.5"Overall Length: 4"Shank Diameter: 1"End Style: Square EndCAD$336.17The A340 was developed for maximum performance in aluminum alloys. Featuring specialized variable pitched fluting and wiper geometry for minimized chatter and maximum surface finish.Aggressive flute geometry minimizes spindle load. -
1"Ø x 1.5" LOC x 4" OAL- Square End - Uncoated - G2 2F Carbide End Mill - **DISCONTINUED**
Flutes: 2Cutting Diameter: 1"Length of Cut: 1.5"Overall Length: 4"Shank Diameter: 1"End Style: Square EndCAD$182.42The G2 series is part of our general purpose line of end mills. The 2 flute geometry is designed for maximum chip evacuation. It excels in low alloy steels and non-ferrous materials like aluminum in high radial engagement machining strategies like... -
1"Ø x 1.5" LOC x 4" OAL- Square End - Uncoated - G4 4F Carbide End Mill - **DISCONTINUED**
Flutes: 4Cutting Diameter: 1"Length of Cut: 1.5"Overall Length: 4"Shank Diameter: 1"End Style: Square EndCAD$182.42The G4 series is part of our general purpose line of end mills. The 4 flute geometry is designed for flexibility, excelling in most machining operations in a wide range of materials. -
1"Ø x 2" LOC x 5" OAL - 0.03" Rad - ALROC-S Coated - V540 5F Carbide Variable End Mill - **DISCONTINUED** - Replacement Part Number:V540-3-1000-20-50-030-ARH
Flutes: 5Cutting Diameter: 1"Length of Cut: 2"Overall Length: 5"Shank Diameter: 1"End Style: Corner RadCAD$321.01The V540 series is a state of the art 5F end mill featuring full variable flute geometry, eccentric relief, and ALROC-S coating for maximum cutting performance in steels up to 50Rc, cast irons, and super alloys. This tool is particularly suitable for... -
1"Ø x 2" LOC x 5" OAL - 0.03" Rad - TiAlN Coated - Perfect Pitch 4 4F Carbide Variable End Mill - **DISCONTINUED**
Flutes: 4Cutting Diameter: 1"Length of Cut: 2"Overall Length: 5"Shank Diameter: 1"End Style: Corner RadCAD$291.15The Perfect Pitch 4 variable pitch geometry is designed to dampen chatter, increasing performance and tool life. Designed with eccentric relief for maximum edge strength and TiAlN coating, perfect pitch end mills excel in stainless steels and super... -
1"Ø x 2.5" LOC x 6" OAL- Square End - Uncoated - G2 2F Carbide End Mill - **DISCONTINUED**
Flutes: 2Cutting Diameter: 1"Length of Cut: 2.5"Overall Length: 6"Shank Diameter: 1"End Style: Square EndCAD$271.55The G2 series is part of our general purpose line of end mills. The 2 flute geometry is designed for maximum chip evacuation. It excels in low alloy steels and non-ferrous materials like aluminum in high radial engagement machining strategies like... -
1"Ø x 3" LOC x 6" OAL - 0.03" Rad - ALROC-S Coated - V540 5F Carbide Variable End Mill - **DISCONTINUED** - Replacement Part Number:V540-3-1000-30-60-030-ARH
Flutes: 5Cutting Diameter: 1"Length of Cut: 3"Overall Length: 6"Shank Diameter: 1"End Style: Corner RadCAD$380.06The V540 series is a state of the art 5F end mill featuring full variable flute geometry, eccentric relief, and ALROC-S coating for maximum cutting performance in steels up to 50Rc, cast irons, and super alloys. This tool is particularly suitable for... -
1"Ø x 3" LOC x 6" OAL - 0.03" Rad - Uncoated - A340 3F Carbide Variable End Mill
Flutes: 3Cutting Diameter: 1"Length of Cut: 3"Overall Length: 6"Shank Diameter: 1"End Style: Corner RadCAD$527.51The A340 was developed for maximum performance in aluminum alloys. Featuring specialized variable pitched fluting and wiper geometry for minimized chatter and maximum surface finish.Aggressive flute geometry minimizes spindle load. -
1"Ø x 3" LOC x 6" OAL- Square End - Uncoated - A340 3F Carbide Variable End Mill
Flutes: 3Cutting Diameter: 1"Length of Cut: 3"Overall Length: 6"Shank Diameter: 1"End Style: Square EndCAD$508.38The A340 was developed for maximum performance in aluminum alloys. Featuring specialized variable pitched fluting and wiper geometry for minimized chatter and maximum surface finish.Aggressive flute geometry minimizes spindle load.