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Sandvik Coromant 5751314 T-Max® Turning Insert, SPU 322 3215, S-Square, SPUN Insert, 3215, Carbide, SPUN 09 03 08 3215
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Sandvik Coromant 5751314 T-Max® Turning Insert, SPU 322 3215, S-Square, SPUN Insert, 3215, Carbide, SPUN 09 03 08 3215
SKU1238666
MFGR #5751314
Your Cost: $10.50/ea
List: Sandvik Coromant Turning Insert, Series: T-Max®, SPUN Insert, S-Square, 3/8 in Inscribed Circle, 1/8 in Thickness, 3/8 in Length, 0.0312 in Corner Radius, Manufacturer's Grade: 3215, ANSI Code: SPU 322 3215, ISO Code: SPUN 09 03 08 3215, 90 deg Included Angle, 11 deg Relief Angle, Neutral Hand, Carbide, MTCVD Coated, Material Grade: K
Sandvik Coromant Turning Insert, Series: T-Max®, SPUN Insert, S-Square, 3/8 in Inscribed Circle, 1/8 in Thickness, 3/8 in Length, 0.0312 in Corner Radius, Manufacturer's Grade: 3215, ANSI Code: SPU 322 3215, ISO Code: SPUN 09 03 08 3215, 90 deg Included Angle, 11 deg Relief Angle, Neutral Hand, Carbide, MTCVD Coated, Material Grade: K
ANSI Code SPU 322 3215 Catalog Number 5751314 Corner Radius 0.031 in Country of Origin IN Finish CVD-TiCN+Al2O3 Coated Gross Weight Per Pack 0.1000 lb Included Angle 90 ° ISO Code SPUN 09 03 08 3215 Length 3/8 in Relief Angle 11 ° Series T-Max® Thickness 1/8 in UPC 11 69826228370 Width 3/8 in Stock Status NONSTOCK Brand Sandvik Coromant Manufacturer Sandvik Coromant Cutting Direction Neutral For Use On Cast Iron Inscribed Circle 3/8 in Insert Size 322 Insert Style SPUN Manufacturer's Grade 3215 Material Carbide Material Grade K Maximum Depth of Cut 4.5 mm Rake Positive Seat Size 09 Shape Square Machining long chipping materials Can be used universally in a wide range of applications Circumference precision-ground Circumference precision-sintered Straight cutting edge for C, S and T basic shapes, for use as a chamfer insert in boring tools 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
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ANSI Code | SPU 322 3215 |
Catalog Number | 5751314 |
Corner Radius | 0.031 in |
Country of Origin | IN |
Finish | CVD-TiCN+Al2O3 Coated |
Gross Weight Per Pack | 0.1000 lb |
Included Angle | 90 ° |
ISO Code | SPUN 09 03 08 3215 |
Length | 3/8 in |
Relief Angle | 11 ° |
Series | T-Max® |
Thickness | 1/8 in |
UPC 11 | 69826228370 |
Width | 3/8 in |
Stock Status | NONSTOCK |
Brand | Sandvik Coromant |
Manufacturer | Sandvik Coromant |
Cutting Direction | Neutral |
For Use On | Cast Iron |
Inscribed Circle | 3/8 in |
Insert Size | 322 |
Insert Style | SPUN |
Manufacturer's Grade | 3215 |
Material | Carbide |
Material Grade | K |
Maximum Depth of Cut | 4.5 mm |
Rake | Positive |
Seat Size | 09 |
Shape | Square |
Machining long chipping materials |
Can be used universally in a wide range of applications |
Circumference precision-ground |
Circumference precision-sintered |
Straight cutting edge for C, S and T basic shapes, for use as a chamfer insert in boring tools |
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 |