Sandvik Coromant 6699188 T-Max® P Negative Basic Shape Turning Insert, WNMG 332-WM 4315, W-Trigon, WNMG Insert, 4315

WNMG Turning Inserts
893837 MFG #: 6699188
Sandvik Coromant
16.91000 / ea
  • Alternate Catalog Number: WNMG 332-WM 4315
  • ANSI Code: WNMG 332-WM 4315
  • Catalog Number: 6699188
  • Corner Radius: 0.0312 in
  • Country of Origin: IN
  • Finish: MTCVD Coated
  • Gross Weight Per Pack: 0.0100 lb
  • Hand of Insert: Neutral
  • Hole Diameter: 0.15 in
  • Included Angle: 80 deg
  • ISO Code: WNMG 06 04 08-WM 4315
  • Item Group: 112
  • Length: 0.2565 in
  • Relief Angle: 0 deg
  • Series: T-Max® P
  • Thickness: 0.1874 in
  • Type: Negative Basic Shape
  • Width: WM
  • Stock Status: NONSTOCK
  • Brand: Sandvik Coromant
  • Manufacturer: Sandvik Coromant
  • Chipbreaker: WM
  • Inscribed Circle: 3/8 in
  • Insert Size: W - Trigon
  • Insert Style: WNMG
  • Manufacturer's Grade: 4315
  • Material: Carbide
  • Material Grade: K/P
  • Maximum Depth of Cut: 3.5 mm
  • Shape: W-Trigon
Sandvik Coromant Turning Insert, Negative Basic Shape, Series: T-Max® P, WNMG Insert, W-Trigon, 3.5 mm Maximum Depth of Cut, 3/8 in Inscribed Circle, 0.1874 in Thickness, 0.2565 in Length, WM Chipbreaker, 0.0312 in Corner Radius, 0.15 in Hole Dia, Manufacturer's Grade: 4315, ANSI Code: WNMG 332-WM 4315, ISO Code: WNMG 06 04 08-WM 4315, 80 deg Included Angle, 0 deg Relief Angle, Neutral Hand, Carbide, MTCVD Coated, Material Grade: K/P
QTY
  • Features
Straight hole and non-flat surface clamping interface
2-side cutting
+/-0.13 mm THK and +/-0.05 mm inscribed circle tolerance
ER treated cutting edge
Solid carbide is extremely heat-resistant and used for high speed applications on cast iron, non-ferrous materials, plastics and other tough-to-machine materials
For external turning operations and internal machining
Wiper technology for high feed machining
Improved machining economy
Excellent surface finish
Eliminate expensive grinding operations
Undisturbed production
Less need for supervision
0.15 - 0.6 mm/r cutting feed
20 life cycle state