Sandvik Coromant 5741156 T-Max® 2-Sided Turning Insert, RNG85K8015 650, R-Round, RNGN..T/K Insert, 650, Carbide

RNGN Turning Inserts
1246443 MFG #: 5741156
Sandvik Coromant
48.77000 / ea
  • Alternate Catalog Number: RNG85K8015 650
  • ANSI Code: RNG85K8015 650
  • Catalog Number: 5741156
  • Corner Radius: 1/2 in
  • Country of Origin: JP
  • Finish: Uncoated
  • Gross Weight Per Pack: 0.4600 lb
  • ISO Code: RNGN250700K20015 650
  • Item Group: 610
  • Relief Angle: 0 °
  • Series: T-Max®
  • Thickness: 5/16 in
  • Type: 2-Sided Basic Shape
  • UPC 11: 69826279162
  • Stock Status: NONSTOCK
  • Brand: Sandvik Coromant
  • Manufacturer: Sandvik Coromant
  • Cutting Direction: Neutral
  • For Use On: Cast Iron, Hardened Materials and Heat Resistant Super Alloys
  • Inscribed Circle: 1 in
  • Insert Size: 85
  • Insert Style: RNGN
  • Manufacturer's Grade: 650
  • Material: Ceramic
  • Material Grade: H, K, S
  • Maximum Depth of Cut: 0.252 in
  • Rake: Negative
  • Seat Size: 25
  • Shape: Round
Sandvik Coromant Turning Insert, 2-Sided, Series: T-Max®, RNGN..T/K Insert, R-Round, 1 in Inscribed Circle, 5/16 in Thickness, 1/2 in Corner Radius, Manufacturer's Grade: 650, ANSI Code: RNG85K8015 650, ISO Code: RNGN250700K20015 650, Neutral Hand, Carbide, Uncoated, Material Grade: K/S
QTY
  • Features
Heavy roughing
Excellent chip breaking
Machining forged parts
For use in train wheel machining
Aluminum oxide with optimized microstructure offers a 50% longer tool life under conditions of crater wear and also reduced machining times
Mechanical post-treatment - unique residual stress rate, increased process reliability
Large, universal chip breaking area and longer tool life for ISO P geometries
Ground seating surface after coating for improved process reliability when working with interrupted cuts
Silver flank face indicator layer for extremely easy wear detection
Microedge technology offers a 30% longer tool life under conditions of flank face wear or plastic deformation
Extremely smooth rake face for excellent tribochemical wear resistance