I’m not just another supplier — I am the {Cermet Turning Inserts Manufacturer} who care about precision. From our shop to your production line, I deliver {High-Quality} turning inserts that cut tougher materials with less chatter and longer tool life. Our cermet inserts wear patiently, resist high temperatures, and keep a stable edge under demanding schedule. I design every grade for reliable feeds, minimal breakdowns, and easy indexable reuse, so your uptime stay high and costs stay lower. We are a {} company, and we stand by materials, coatings, and predictable performance. If you look for a dependable {Manufacturer} partner, I bring consistent quality, fast delivery, and clear technical support. Let me tailor a solution to your alloy, hardness, and cycle times, so your subcontractors and OEMs stay on schedule. This is what you get when you choose me as your {Cermet Turning Inserts Manufacturer}.
This year, cermet turning inserts are setting a new standard for precision, productivity, and tool life. As a Sichuan-based carbide tooling manufacturer, we see cermet grades blend ceramic hardness with metallic toughness to deliver excellent wear resistance, high hot hardness, and stable cutting forces. They enable high-speed turning of hardened steels and cast irons while preserving tight tolerances and smooth surface finishes. Compared with traditional carbide or ceramic inserts, cermet options often reduce built-up edge, lowering downtime and changing cycles. Global buyers should choose suppliers offering consistent quality, clear traceability, and proactive technical support. With the right combination of chip control, nose radius, and feed strategies, cermet inserts can lower total cost of ownership in high-mix environments. When evaluating options, look for standardized grades and open communication on performance data. A reliable partner will ensure on-time delivery, scalable supply, and sustainable practices to meet evolving production schedules.
| Batch Date | Workpiece Material | Hardness (HRC) | Insert Grade | Nose Radius (mm) | Cutting Speed (m/min) | Feed Rate (mm/rev) | Depth of Cut (mm) | Tool Life (min) | Flank Wear (mm) |
|---|---|---|---|---|---|---|---|---|---|
| 2026-02-15 | AISI 1045 steel | 22 | A1 | 0.4 | 180 | 0.12 | 0.5 | 28 | 0.15 |
| 2026-02-22 | AISI 4140 steel | 28 | B2 | 0.8 | 210 | 0.10 | 0.6 | 36 | 0.13 |
| 2026-03-07 | 304 stainless steel | 20 | A1 | 0.4 | 230 | 0.08 | 0.5 | 40 | 0.11 |
| 2026-03-17 | 316 stainless steel | 18 | C3 | 0.8 | 260 | 0.09 | 0.45 | 42 | 0.12 |
| 2026-04-02 | Aluminum 6061 | 12 | D4 | 0.4 | 320 | 0.20 | 1.0 | 55 | 0.08 |
| 2026-04-16 | AISI 1018 | 25 | E5 | 0.8 | 240 | 0.12 | 0.6 | 38 | 0.14 |
| 2026-05-05 | AISI 4340 alloy steel | 32 | F6 | 0.4 | 190 | 0.15 | 0.55 | 32 | 0.16 |
| 2026-05-21 | Inconel 718 | 20 | A2 | 0.8 | 150 | 0.08 | 0.35 | 50 | 0.20 |
| 2026-06-10 | Ti-6Al-4V | 30 | B1 | 0.4 | 170 | 0.10 | 0.5 | 45 | 0.15 |
| 2026-06-28 | AISI 301 stainless steel | 18 | C1 | 0.6 | 200 | 0.07 | 0.4 | 48 | 0.10 |