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Sandvik Coromant 5755007 CoroTurn® 111 Turning Insert, TPMT 2(1.5)2-UM 1125, T-Triangle, TPMT Insert, 1125, Carbide
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Sandvik Coromant 5755007 CoroTurn® 111 Turning Insert, TPMT 2(1.5)2-UM 1125, T-Triangle, TPMT Insert, 1125, Carbide
SKU1248548
MFGR #5755007
Your Cost: $13.39/ea
List: Sandvik Coromant Turning Insert, Series: CoroTurn® 111, TPMT Insert, T-Triangle, 2.5 mm Maximum Depth of Cut, 1/4 in Inscribed Circle, 0.0937 in Thickness, 0.4329 in Length, UM Chipbreaker, 0.0312 in Corner Radius, 0.1102 in Hole Dia, Manufacturer's Grade: 1125, ANSI Code: TPMT 2(1.5)2-UM 1125, ISO Code: TPMT 11 02 08-UM 1125, 60 deg Included Angle, 11 deg Relief Angle, Neutral Hand, Carbide, PVD Coated, Material Grade: M
Sandvik Coromant Turning Insert, Series: CoroTurn® 111, TPMT Insert, T-Triangle, 2.5 mm Maximum Depth of Cut, 1/4 in Inscribed Circle, 0.0937 in Thickness, 0.4329 in Length, UM Chipbreaker, 0.0312 in Corner Radius, 0.1102 in Hole Dia, Manufacturer's Grade: 1125, ANSI Code: TPMT 2(1.5)2-UM 1125, ISO Code: TPMT 11 02 08-UM 1125, 60 deg Included Angle, 11 deg Relief Angle, Neutral Hand, Carbide, PVD Coated, Material Grade: M
- Alternate Catalog Number - TPMT 2(1.5)2-UM 1125 - ANSI Code - TPMT 2(1.5)2-UM 1125 - Catalog Number - 5755007 - Corner Radius - 0.0312 in - Country of Origin - US - Finish - PVD Coated - Gross Weight Per Pack - 1 lb - Hand of Insert - Neutral - Hole Diameter - 0.1102 in - Included Angle - 60 deg - ISO Code - TPMT 11 02 08-UM 1125 - Item Group - 130 - Length - 0.4329 in - Relief Angle - 11 deg - Series - CoroTurn® 111 - Thickness - 0.0937 in - Type - CoroTurn® 111 - UPC 11 - 69826249236 - Width - 0.793 mm - Stock Status - NONSTOCK - Brand - Sandvik Coromant - Manufacturer - Sandvik Coromant - Chipbreaker - UM - Inscribed Circle - 1/4 in - Insert Size - 2.5 mm - Insert Style - TPMT - Manufacturer's Grade - 1125 - Material - Carbide - Material Grade - M - Maximum Depth of Cut - 2.5 mm - Shape - T-Triangle 
- 40 - 60 deg countersunk hole and non-flat surface clamping interface - 1-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 optimized internal turning operations requiring small cutting forces - The positive insert shape combines low cutting forces with good edge strength - The screw clamping ensures stability and unobstructed chip flow - 0.09 - 0.26 mm/r cutting feed - 20 life cycle state 
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| Alternate Catalog Number | TPMT 2(1.5)2-UM 1125 | 
| ANSI Code | TPMT 2(1.5)2-UM 1125 | 
| Catalog Number | 5755007 | 
| Corner Radius | 0.0312 in | 
| Country of Origin | US | 
| Finish | PVD Coated | 
| Gross Weight Per Pack | 1 lb | 
| Hand of Insert | Neutral | 
| Hole Diameter | 0.1102 in | 
| Included Angle | 60 deg | 
| ISO Code | TPMT 11 02 08-UM 1125 | 
| Item Group | 130 | 
| Length | 0.4329 in | 
| Relief Angle | 11 deg | 
| Series | CoroTurn® 111 | 
| Thickness | 0.0937 in | 
| Type | CoroTurn® 111 | 
| UPC 11 | 69826249236 | 
| Width | 0.793 mm | 
| Stock Status | NONSTOCK | 
| Brand | Sandvik Coromant | 
| Manufacturer | Sandvik Coromant | 
| Chipbreaker | UM | 
| Inscribed Circle | 1/4 in | 
| Insert Size | 2.5 mm | 
| Insert Style | TPMT | 
| Manufacturer's Grade | 1125 | 
| Material | Carbide | 
| Material Grade | M | 
| Maximum Depth of Cut | 2.5 mm | 
| Shape | T-Triangle | 
| 40 - 60 deg countersunk hole and non-flat surface clamping interface | 
| 1-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 optimized internal turning operations requiring small cutting forces | 
| The positive insert shape combines low cutting forces with good edge strength | 
| The screw clamping ensures stability and unobstructed chip flow | 
| 0.09 - 0.26 mm/r cutting feed | 
| 20 life cycle state |