| Low-carbon and general-purpose steels | A balanced carbide grade with suitable wear resistance and toughness is a practical starting point. | A wear- and heat-resistant coating, such as TiAlN or AlTiN, is commonly used for steel machining. | A lightly honed edge can help resist chipping; avoid an unnecessarily heavy hone that increases cutting forces. | Match the insert to the steel’s hardness and the machine’s rigidity. Use stable clamping and follow the insert maker’s cutting data. |
| Stainless steels | A tough grade is often preferred because stainless steels can work-harden and generate substantial cutting heat. | A heat-resistant coating may be suitable. For some applications, a sharp, polished, uncoated or specialized surface can help limit built-up edge. | A sharp, positive edge generally reduces cutting forces; use enough edge strength to prevent chipping. | Maintain a consistent feed and avoid rubbing or dwelling, which can promote work hardening. Use coolant when appropriate for the operation and machine. |
| Cast iron | A wear-resistant grade is often appropriate for the abrasive nature of many cast irons; tougher grades may be needed for interrupted cuts. | Wear-resistant coatings are commonly considered. Select the coating and grade together for the specific cast-iron type and cutting conditions. | A stronger, lightly honed edge can improve resistance to edge damage, especially where the cut is interrupted. | Account for the casting’s abrasiveness and inclusions. Dry machining may be suitable in some setups, but follow tool and process recommendations. |
| Aluminum and other non-ferrous alloys | A sharp, fine-grain carbide grade is often selected to support a keen edge and good surface finish. | A polished, uncoated surface or a coating intended for non-ferrous materials, such as TiB2, may help reduce material adhesion. | Choose a sharp, positive edge with a polished rake face where available. | Avoid coatings or edge preparations that are not intended for the alloy, as they may increase adhesion or cutting forces. Confirm suitability for silicon-rich aluminum. |
| Titanium and heat-resistant alloys | A tough, heat-resistant carbide grade is generally preferred; these materials can retain heat at the cutting edge. | Consider a coating designed for high-temperature cutting, selected in accordance with the insert supplier’s guidance for the specific alloy. | A sharp but sufficiently supported edge can help balance cutting forces and edge strength. | Use rigid workholding and avoid excessive tool engagement. Apply conservative starting conditions and monitor wear closely. |
| Hardened steel or high-hardness components | Select a grade explicitly rated for the workpiece hardness and operation; conventional carbide grades may not be suitable at very high hardness. | Use only a coating and insert grade approved for the specified hardness and cutting method. | A stronger edge may resist chipping, but the correct edge depends on hardness, engagement, and machine rigidity. | Check the insert’s stated hardness range before cutting. For very hard materials, a different cutting-tool material or process may be required. |
| Unstable setup, long overhang, or interrupted engagement | Favor toughness and resistance to edge chipping over maximum wear resistance alone. | Choose a coating compatible with the material and temperature; coating selection cannot compensate for poor rigidity. | Use a more robust edge preparation if recommended for the insert, while avoiding excessive edge rounding. | Improve workholding and minimize overhang where possible. Reduce cutting load if vibration or edge damage occurs. |
| Fine thread finish or small thread features | A grade that maintains a stable, sharp cutting edge can support consistent thread form. | A smooth, low-adhesion surface may help where built-up material affects the finish. | A sharp, accurately formed edge is important; confirm the insert profile matches the required thread standard and pitch. | Check thread profile, pitch, insert hand, and toolpath. Inspect the first thread with an appropriate gauge before continuing production. |