Sandvik Coromant 5755418 CoroTurn® 107 Basic Shape Positive Turning Insert, VBGT 332-UM H13A, V-35 deg Diamond, VBGT Insert
VBGT Turning Inserts
1248299
MFG #: 5755418
Sandvik Coromant
25.20000
/ ea
- Alternate Catalog Number: VBGT 16 04 08-UM H13A
- ANSI Code: VBGT 332-UM H13A
- Catalog Number: 5755418
- Corner Radius: 0.0312 in
- Country of Origin: SE
- Finish: Uncoated
- Gross Weight Per Pack: 0.0200 lb
- Hand of Insert: Neutral
- Hole Diameter: 0.1732 in
- Included Angle: 35 deg
- ISO Code: VBGT 16 04 08-UM H13A
- Item Group: 130
- Length: 0.6537 in
- Relief Angle: 5 deg
- Series: CoroTurn® 107
- Thickness: 0.1874 in
- Type: Basic Shape Positive
- UPC 11: 69826211782
- Width: UM
- Stock Status: NONSTOCK
- Brand: Sandvik Coromant
- Manufacturer: Sandvik Coromant
- Chipbreaker: UM
- Inscribed Circle: 3/8 in
- Insert Size: VBGT
- Insert Style: VBGT
- Manufacturer's Grade: H13A
- Material: Carbide
- Material Grade: K/N/S
- Maximum Depth of Cut: 4 mm
- Shape: V-35 deg Diamond
Sandvik Coromant Turning Insert, Basic Shape Positive, Series: CoroTurn® 107, VBGT Insert, V-35 deg Diamond, 4 mm Maximum Depth of Cut, 3/8 in Inscribed Circle, 0.1874 in Thickness, 0.6537 in Length, UM Chipbreaker, 0.0312 in Corner Radius, 0.1732 in Hole Dia, Manufacturer's Grade: H13A, ANSI Code: VBGT 332-UM H13A, ISO Code: VBGT 16 04 08-UM H13A, 35 deg Included Angle, 5 deg Relief Angle, Neutral Hand, Carbide, Uncoated, Material Grade: K/N/S
- Features
40 - 60 deg countersunk hole and non-flat surface clamping interface |
1-side cutting |
+/-0.13 mm THK and +/-0.025 mm inscribed circle tolerance |
Sharp 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 machining of small, long, slender components and internal machining |
The positive insert shape combines low cutting forces with good edge strength |
The screw clamping ensures stability and unobstructed chip flow |
0.12 - 0.4 mm/r cutting feed |
20 life cycle state |