Guhring

Guhring 9007690105000 RT150GG/769 High Penetration Web Thinned Straight Flute Drill Bit, 10.5 mm Drill - Metric, 0.4134 in Drill - Decimal Inch, 7XD D Cutting, 2 Flutes, Carbide

769010.5 MFG #: 9007690105000
$517.57 / EA
Estimated Delivery 7 to 10 Business Days
  • Manufacturer: Guhring
  • Type: High Penetration Web Thinned
  • Series: RT150GG/769
  • Drill Diameter Measurement System: Imperial/Metric
  • Drill Size - Metric: 10.5
  • Drill Size - Decimal Inch: 0.4134
  • Overall Length: 163
  • Cutting Depth: 7XD
  • Number of Flutes: 2
  • Flute Type: Straight
  • Flute Length: 114
  • Shank Size: 12
  • Shank Type: Straight
  • Point Angle: 120
  • Point Type: Standard
  • Cutting Direction: Right Hand
  • Cutting Edge Material: Carbide
  • Applicable Materials: Aluminum, Alloy and Cast Iron
  • Drilling Application: Hydraulic Chuck, Accurate Alignment Tool Holder and Powerful Machine Applications
  • Through Coolant (Yes/No): Yes
  • Material: Carbide
  • Finish: Bright
  • Brand: Guhring
Guhring Straight Flute Drill Bit, High Penetration Web Thinned, Series: RT150GG/769, Metric/Imperial, 10.5 mm Drill - Metric, 0.4134 in Drill - Decimal Inch, 163 mm Overall Length, 7XD Cutting Depth, 2 Flutes, Straight Flute, 114 mm Flute Length, 12 mm Shank, Straight Shank, 120 deg Point, Standard Point, Right Hand Cutting Direction, Carbide Cutting Edge, Applicable Materials: Aluminum, Alloy and Cast Iron, Hydraulic Chuck, Accurate Alignment Tool Holder and Powerful Machine Applications, Yes Through Coolant, Carbide, Bright
  • Very good self-centering characteristics
  • Very good self-centering characteristics
  • High productivity
  • High cutting rates
  • Close diameter tolerances
  • Very good surface quality of hole
  • Very good surface quality of hole
  • Observe optimal coolant pressure
  • Observe optimal coolant pressure
Very good self-centering characteristics
Very good self-centering characteristics
High productivity
High cutting rates
Close diameter tolerances
Very good surface quality of hole
Very good surface quality of hole
Observe optimal coolant pressure
Observe optimal coolant pressure