Guhring 9065110080000 RT100T/6511 Deep Hole High Performance High Penetration Extra Length Drill, 8 mm Drill - Metric, 0.315 in Drill - Decimal Inch, 223 mm OAL, Carbide

651018 MFG #: 9065110080000
$979.20 / EA
Estimated Delivery 7 to 10 Business Days
  • Manufacturer: Guhring
  • Type: Deep Hole High Performance High Penetration
  • Series: RT100T/6511
  • Drill Size - Metric: 8
  • Drill Size - Decimal Inch: 0.315
  • Overall Length: 223
  • Cutting Depth: 20XD
  • Number of Flutes: 2
  • Flute Type: Spiral
  • Flute Length: 183
  • Shank Size: 8
  • Shank Type: Standard/Straight
  • Point Angle: 135
  • Point Type: Standard
  • Cutting Direction: Right Hand
  • Cutting Edge Material: Carbide
  • Material: Carbide
  • Finish: TiAlN Coated
  • Applicable Materials: Alloyed Steels, Free Cutting Steels, Tool Steels, Stainless Steels, Cast Iron, Brass, Copper, Special Alloys and Hardened Steels
  • Specifications Met: DIN 6535 HA
  • Through Coolant (Yes/No): Yes
  • Brand: Guhring
Guhring Extra Length Drill, Deep Hole High Performance High Penetration, Series: RT100T/6511, 8 mm Drill - Metric, 0.315 in Drill - Decimal Inch, 223 mm Overall Length, 20XD Cutting Depth, 2 Flutes, Spiral Flute, 183 mm Flute Length, 8 mm Shank, Standard/Straight Shank, 135 deg Point, Standard Point, Right Hand Cutting Direction, Carbide Cutting Edge, Carbide, TiAlN Coated, Applicable Materials: Alloyed Steels, Free Cutting Steels, Tool Steels, Stainless Steels, Cast Iron, Brass, Copper, Special Alloys and Hardened Steels, Specifications Met: DIN 6535 HA, Yes Through Coolant
  • Special geometry
  • Special geometry
  • Optimized flute design
  • Optimized flute design
  • Maximum diameter of coolant ducts
  • Maximum diameter of coolant ducts
  • Highest cutting rates
  • Short chips
  • Short chips
  • Observe optimal coolant pressure
  • Observe optimal coolant pressure
Special geometry
Special geometry
Optimized flute design
Optimized flute design
Maximum diameter of coolant ducts
Maximum diameter of coolant ducts
Highest cutting rates
Short chips
Short chips
Observe optimal coolant pressure
Observe optimal coolant pressure