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Sandvik Coromant 5725732 T-Max® P Negative Basic Shape Turning Insert, CNMM 433-PR 4205, C-80 deg Diamond, CNMM Insert
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Sandvik Coromant 5725732 T-Max® P Negative Basic Shape Turning Insert, CNMM 433-PR 4205, C-80 deg Diamond, CNMM Insert
SKU1242012
MFGR #5725732
Your Cost: $15.75/ea
List: Sandvik Coromant Turning Insert, Negative Basic Shape, Series: T-Max® P, CNMM Insert, C-80 deg Diamond, 7.5 mm Maximum Depth of Cut, 1/2 in Inscribed Circle, 0.1874 in Thickness, 0.5077 in Length, PR Chipbreaker, 0.0468 in Corner Radius, 0.2029 in Hole Dia, Manufacturer's Grade: 4205, ANSI Code: CNMM 433-PR 4205, ISO Code: CNMM 12 04 12-PR 4205, 80 deg Included Angle, 0 deg Relief Angle, Neutral Hand, Carbide, MTCVD Coated, Material Grade: P
Sandvik Coromant Turning Insert, Negative Basic Shape, Series: T-Max® P, CNMM Insert, C-80 deg Diamond, 7.5 mm Maximum Depth of Cut, 1/2 in Inscribed Circle, 0.1874 in Thickness, 0.5077 in Length, PR Chipbreaker, 0.0468 in Corner Radius, 0.2029 in Hole Dia, Manufacturer's Grade: 4205, ANSI Code: CNMM 433-PR 4205, ISO Code: CNMM 12 04 12-PR 4205, 80 deg Included Angle, 0 deg Relief Angle, Neutral Hand, Carbide, MTCVD Coated, Material Grade: P
ANSI Code CNMM 433-PR 4205 Catalog Number 5725732 Corner Radius 0.047 in Country of Origin SE Finish CVD-TiCN+Al2O3+TiN Coated Gross Weight Per Pack 0.2100 lb Hole Diameter 0.2029 in Included Angle 80 ° ISO Code CNMM 12 04 12-PR 4205 Relief Angle 0 ° Series T-Max® P Thickness 0.1874 in UPC 11 69826242023 Stock Status NONSTOCK Brand Sandvik Coromant Manufacturer Sandvik Coromant Chipbreaker PR Cutting Direction Neutral For Use On Steel Inscribed Circle 1/2 in Insert Size 433 Insert Style CNMM Manufacturer's Grade 4205 Material Carbide Material Grade P Maximum Depth of Cut 7.5 mm Rake Negative Seat Size 12 Shape Diamond Finishing insert Excellent chip control Can also be used for precision boring 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 | CNMM 433-PR 4205 |
| Catalog Number | 5725732 |
| Corner Radius | 0.047 in |
| Country of Origin | SE |
| Finish | CVD-TiCN+Al2O3+TiN Coated |
| Gross Weight Per Pack | 0.2100 lb |
| Hole Diameter | 0.2029 in |
| Included Angle | 80 ° |
| ISO Code | CNMM 12 04 12-PR 4205 |
| Relief Angle | 0 ° |
| Series | T-Max® P |
| Thickness | 0.1874 in |
| UPC 11 | 69826242023 |
| Stock Status | NONSTOCK |
| Brand | Sandvik Coromant |
| Manufacturer | Sandvik Coromant |
| Chipbreaker | PR |
| Cutting Direction | Neutral |
| For Use On | Steel |
| Inscribed Circle | 1/2 in |
| Insert Size | 433 |
| Insert Style | CNMM |
| Manufacturer's Grade | 4205 |
| Material | Carbide |
| Material Grade | P |
| Maximum Depth of Cut | 7.5 mm |
| Rake | Negative |
| Seat Size | 12 |
| Shape | Diamond |
| Finishing insert |
| Excellent chip control |
| Can also be used for precision boring |
| 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 |