Prototyp Prototex® Eco Plus EP2226302 High Performance Universal Forming Machine Tap, Imperial, 5/16-18, UNC Thread, 2B

Thread Forming Taps
823197 MFG #: EP2226302-UNC5/16
Walter (Valentine)
66.95000 / ea
  • Catalog Number: EP2226302-UNC5/16
  • Class of Fit: 2B
  • Country of Origin: DE
  • Cutting Direction: Right Hand
  • Finish|Coating: Hard Lube Coated
  • Gross Weight Per Pack: 0.0600 lb
  • Material: HSS-E-PM
  • Measurement System: Imperial
  • Number of Flutes: 3
  • Overall Length: 93.26 mm
  • Series: EP2226302
  • Shank Diameter: 6 mm
  • Size: 5/16-18
  • Square Size: 4.9 mm
  • Standards: DIN 2184-1
  • Sub Brand: Proto®
  • Thread Length: 18 mm
  • Thread Standard: UNC
  • Type: High Performance Universal
  • Stock Status: NONSTOCK
  • Brand: Walter (Valentine)
  • Manufacturer: Walter
QTY
  • Features
8 mm square length
33 mm flute length
6.6 mm pre-machined hole diameter
6.35 mm chamfer
90 mm functional length
<=3.5xDN cutting depth ratio
3.5 to 5 pitch
The THL hard material coating and an additional surface treatment guarantee outstanding tool life with no cold welding
Versions with radial and axial coolant outlet specifically for use with minimum quantity lubrication
High degree of process reliability, even for deep blind and through hole threads, thanks to secure chip management
For use in long and short chipping materials up to tensile strengths of around 1300 N/sq-mm
These tool ranges are extremely strong all-rounder's and are suitable for machining the most diverse of materials
For long chipping materials
Applicable on cast iron, non-ferrous materials, steel and stainless steel
ISO Code: EP2226302-UNC5/16
ANSI Code: EP2226302-UNC5/16
THL - A tried-and-tested solution for dry machining or minimum quantity lubrication
It also delivers outstanding performance in the machining of stainless steels with emulsion
THL is generally compatible with almost any kind of steel material
Chip formation is improved in comparison with TiN and TiCN, which is an important advantage particularly in the machining of relatively deep blind holes in long chipping materials