Cargo Carbide TNMG TM-25 Steel Insert is a carbide turning insert developed for CNC machining of suitable steel components. The TM-25 geometry gives manufacturers a dedicated insert option for steel-turning applications where controlled cutting and repeatable machining performance are important.
The TNMG TM-25 Steel Insert is intended for compatible turning operations such as external diameter machining, facing and general production work. The correct grade, insert size, nose radius and cutting parameters should be selected according to the steel being machined and the required operation.
For CNC production, insert selection should consider the workpiece material together with cutting speed, feed rate and depth of cut. Cargo Carbide provides steel-oriented TNMG tooling for engineering manufacturers and CNC workshops looking for application-specific carbide turning solutions.
If you are searching for a TNMG TM insert for steel, TNMG carbide insert for CNC turning or steel turning insert, Cargo Carbide offers the TM-25 configuration for compatible industrial machining applications.
| Specification | Details |
|---|---|
| Brand | Cargo Carbide |
| Product | TNMG TM FOR STEEL |
| Insert Type | TNMG |
| Geometry | TM |
| Cutting Material | Carbide |
| Workpiece | Steel |
| Application | CNC Steel Turning |
| Machine | CNC Lathe / Turning Machine |
| Operations | Turning / Facing / Production Machining* |
| Grade | CO25S |
| Insert Size | 1604 |
| Nose Radius | 0.4/0.8/1.2 |
A TNMG TM Steel Insert is a carbide turning insert with TM-25 geometry intended for compatible steel-machining applications on CNC turning machines.
It is intended for suitable steel-turning operations such as external turning, facing and general production machining, depending on the selected grade and cutting conditions.
Yes. It can be used on a CNC lathe when its dimensions and geometry match the TNMG tool holder and the selected grade is suitable for the steel workpiece.
Consider the steel grade, machining operation, depth of cut, feed rate, cutting speed, insert size and nose radius. These factors should be matched with the appropriate insert grade and geometry.
The geometry designation represents a particular cutting configuration. Different TNMG geometries are intended for different combinations of machining conditions, workpiece materials and operations, so the correct choice should be based on the actual application.