Precision Twist Drill 5998529 R10H Jobber Length Drill Bit, 25/64 in Drill - Fraction, 0.3906 in Drill - Decimal Inch, 118 deg Point, HSS, Bright
25846407
MFG #: 5998529
$0.00
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Item currently not in stock. Lead time based upon availability from the manufacturer.
- Series: R10H
- Drill Diameter Measurement System: Imperial
- Drill Size - Fraction: 25/64
- Drill Size - Decimal Inch: 0.3906
- Overall Length: 5-1/8
- Cutting Depth: 4xD
- Number of Flutes: 2
- Flute Type: Spiral
- Flute Length: 3-3/4
- Shank Size: 25/64
- Shank Type: Straight
- Point Angle: 118
- Point Type: Conventional
- Cutting Direction: Right Hand
- Cutting Edge Material: HSS
- Through Coolant (Yes/No): No
- Material: HSS
- Finish: Bright
- Applicable Materials: Copper, Unalloyed Aluminum, Thermoplastic, Magnetic Soft Steel, Structural Steel/Case Carburising Steel, Lamellar Graphite, Nodular Graphite/Malleable Cast Iron, Unalloyed Titanium, Unalloyed Nickel, Brass and Bronze, Copper, Unalloyed Aluminum, Thermoplastic, Magnetic Soft Steel, Structural Steel/Case Carburizing Steel, Lamellar Graphite, Nodular Graphite/Malleable Cast Iron, Unalloyed Titanium, Unalloyed Nickel, Brass and Bronze
- Diameter: 25/64
- Through Coolant: No
Precision Twist Drill Jobber Length Drill Bit, Series: R10H, Imperial, 25/64 in Drill - Fraction, 0.3906 in Drill - Decimal Inch, 5-1/8 in Overall Length, 4XD Cutting Depth, 2 Flutes, Spiral Flute, 3-3/4 in Flute Length, 25/64 in Shank, Straight Shank, 118 deg Point, Conventional Point, Right Hand Cutting Direction, HSS Cutting Edge, No Through Coolant, HSS, Bright, Applicable Materials: Copper, Unalloyed Aluminum, Thermoplastic, Magnetic Soft Steel, Structural Steel/Case Carburizing Steel, Lamellar Graphite, Nodular Graphite/Malleable Cast Iron, Unalloyed Titanium, Unalloyed Nickel, Brass and Bronze
- High helix and bright finish for better chip flow in soft or non-ferrous materials
- High helix and brigh
High helix and bright finish for better chip flow in soft or non-ferrous materials
High helix and bright finish for better chip flow in soft or non-ferrous materials