Cargo Carbide TNGA PCD Insert is a precision cutting insert designed for CNC turning applications involving aluminium and other suitable non-ferrous materials. PCD, or Polycrystalline Diamond, provides excellent wear resistance and is widely used where high-quality surface finish, dimensional consistency and extended cutting performance are required.
The TNGA PCD insert is suitable for precision turning, finishing and machining applications where conventional carbide tooling may not provide the desired tool life or surface finish. The correct PCD grade and cutting geometry should be selected according to the workpiece material, machining operation and cutting conditions.
Cargo Carbide provides PCD turning inserts for CNC machining, making them suitable for manufacturing applications involving aluminium, non-ferrous alloys and other compatible materials.
For manufacturers looking for a PCD insert for aluminium, CNC PCD turning insert or precision PCD cutting tool, Cargo Carbide TNGA PCD offers a tooling solution for demanding machining applications.
| Specification | Details |
|---|---|
| Brand | Cargo Carbide |
| Product | TNGA PCD Insert |
| Insert Type | TNGA |
| Cutting Material | PCD |
| Application | Precision Turning |
| Machine | CNC Lathe / CNC Turning |
| Workpiece | Aluminium / Non-Ferrous Materials* |
| Operation | Turning / Finishing |
| Tool Type | PCD Turning Insert |
| Grade | Add actual Cargo grade |
| Size | Add actual available sizes |
| Nose Radius | Add actual available radii |
Applications
A TNGA PCD insert is a triangular negative-style turning insert incorporating polycrystalline diamond as the cutting material. It is commonly used for precision machining of suitable non-ferrous materials.
TNGA PCD inserts are used for CNC turning, finishing and precision machining applications, particularly with aluminium and other compatible non-ferrous materials.
Yes. PCD inserts are widely used for machining aluminium and suitable non-ferrous materials because of their high wear resistance and ability to produce good surface finishes when correctly selected and applied.
PCD can provide significantly higher wear resistance and excellent cutting performance in suitable aluminium and non-ferrous applications. The actual performance depends on the material, cutting parameters, geometry and PCD grade.
Selection depends on the aluminium alloy or other workpiece material, machining operation, cutting speed, feed rate, depth of cut, required surface finish, insert size and PCD grade. The correct configuration should be selected for the specific application.