1/4" Reduced Shank High Speed Steel Twist Drill
TTC 1/4 Reduced Shank High Speed Steel Twist Drills - Drill Point Angle: 118°   Tool Material: High speed steel   Flute Shape: Standard spiral, helical flutes   Series: A16   Shank Size : 1/4   Size : 7/16

1/4" Reduced Shank High Speed Steel Twist Drill

Item #: 01-082-028
Brand: TTC
Size: 7/16"
Tool Material: High Speed Steel
Finish Coating: Black Oxide With Polished Flutes

Applications

  • Designed as a lower cost alternative for general drilling operations.
  • Suitable for non-production drilling operations.
  • For use in a wide range of normal ferrous and non-ferrous metals as well as non-metallic materials.
  • Intended for those applications where only a 1/4" chuck is available to drive the drills.

Features

  • Standard two flute design.
  • Standard spiral, helical flutes.
  • Right hand (clockwise rotation) cutting direction.
  • All drills have reduced shanks that are 1/4" in diameter.
  • General purpose lengths are proportional to the drill diameter.

Technical Data

  • Precision ground flutes.
  • Cylindrically ground.
  • 118° point angle and standard web thickness.
  • Black finished flutes and polished cutting surfaces.

Notes

Limited Supply.
TTC A16 118° Point HSS Ground Fractional 1/4" Shank Metal Working Drills
Product Specifications
Brand TTC
Size 7/16"
Tool Material High Speed Steel
Finish Coating Black Oxide With Polished Flutes
Overall Length 4"
Drill Type Reduced Shank
Drill Grade General Purpose
Drill Point Angle 118°
Flute Shape Standard Spiral, Helical Flute
Flute Surface Precision Ground
Grade General Purpose
Hardness 58 to 60 RC
Manufacturing Method Cylindrically Ground
No. of Flutes 2
Point Sharpening Type Standard Point
Series A16
Prop. 65 Yes
Shank Style Reduced Shank
Type 1/4" Reduced Shank High Speed Steel Twist Drills
Weight 0.0709 lbs.
Country of Origin Import
Prop 65 Warning Many metalworking products do contain metals that are included in the latest Prop 65 warning. Exposure to the elements can be harmful. May cause cancer and reproductive harm.

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