Chicago-Latrobe® 51404 110X Extra Length Heavy Duty Taper Shank Drill Bit, 5/8 in Drill - Fraction, 0.625 in Drill - Decimal Inch, #2 Morse Taper Shank Taper, HSS

25751404 MFG #: 51404
$0.00 / Each
Item currently not in stock. Lead time based upon availability from the manufacturer.
  • Type: Extra Length Heavy Duty
  • Series: 110X
  • Drill Diameter Measurement System: Imperial
  • Drill Size - Fraction: 5/8
  • Drill Size - Decimal Inch: 0.625
  • Overall Length: 12
  • Number of Flutes: 2
  • Flute Type: Spiral
  • Flute Length: 8
  • Shank Taper Designation: #2 Morse Taper
  • Point Angle: 118
  • Point Type: Notched
  • Cutting Direction: Right Hand
  • Cutting Edge Material: HSS
  • Through Coolant (Yes/No): No
  • Material: HSS
  • Finish: Black Oxide/Steam Oxide
  • Applicable Materials: Alloy Steel, Carbon Steel, Cast Iron and Tool Steel
  • Diameter: 5/8
  • Drill Dia Measurement System: Imperial
  • Through Coolant: No
Chicago-Latrobe® Taper Shank Drill Bit, Extra Length Heavy Duty, Series: 110X, Imperial, 5/8 in Drill - Fraction, 0.625 in Drill - Decimal Inch, 12 in Overall Length, 2 Flutes, Spiral Flute, 8 in Flute Length, #2 Morse Taper Shank Taper Designation, 118 deg Point, Notched Point, Right Hand Cutting Direction, HSS Cutting Edge, No Through Coolant, HSS, Black Oxide/Steam Oxide, Applicable Materials: Alloy Steel, Carbon Steel, Cast Iron and Tool Steel
QTY
  • Heavy duty geometry for drilling in tough, high tensile and work-hardening materials under
  • Extra length for long reach applications
  • Taper shank made to american national standard (morse) dimensions for use in corresponding
  • Black oxide surface finish increases wear resistance and adds lubricity, improving chip fl
Heavy duty geometry for drilling in tough, high tensile and work-hardening materials under extreme operating conditions
Extra length for long reach applications
Taper shank made to american national standard (morse) dimensions for use in corresponding morse taper holders
Black oxide surface finish increases wear resistance and adds lubricity, improving chip flow