High Temp Resistant TiN Coated Carbide Boring Bar For Aerospace Structural Deep Hole Boring
| Attribute | Value |
|---|---|
| Name | High Temperature Resistant TiN Coated Carbide Boring Bar |
| Type | Boring Cutter |
| Product name | Surface Finish Optimized Tool |
| Suitable for | Alloy Steel, Stainless Steel, Titanium Alloy, etc |
| Express | TNT, DHL, EMS |
AMG provides advanced and efficient customized carbide cutting tools to meet various precision machining needs. With our manufacturing experience and technological advantages, we create optimized tool products based on customer drawings or workpiece structure requirements, improving machining efficiency and reducing production costs.
The TiN-coated carbide boring tool is one of AMG's best-selling products, specifically designed for deep-hole boring processes of aviation structural components. It offers excellent high-temperature resistance and wear resistance, enabling high-precision and stable machining in extreme processing environments.
| Parameter | Description |
|---|---|
| Material | Ultra-fine grain carbide |
| Coating | TiN (Titanium Nitride) PVD coating |
| Diameter Range | 10mm - 50mm (customizable) |
| Length Range | Up to 300mm or more |
| Tolerance | IT6 - IT8 precision class |
| Cooling | Optional internal coolant through-hole design |
The TiN-coated carbide boring tool is specifically designed for deep-hole high-precision machining of aviation components. Through precisely controlled rotational speed and feed rate, the tool stably produces cylindrical holes with precise dimensions and consistent roundness.
TiN (titanium nitride) coating provides excellent high-temperature resistance and oxidation resistance, effectively reducing cutting friction, prolonging tool sharpness, and ensuring hole diameter stability and surface quality during long-term continuous processing.
- Precision machining of deep holes in aviation structural components for stable size control
- TiN coating reduces friction, prevents high-temperature oxidation, and extends tool life
- Maintains sharp cutting edges for long-term high-intensity machining tasks
- Optional internal cooling design enhances heat dissipation and chip removal during deep hole machining
Titanium alloys, nickel-based superalloys, stainless steels, and other aerospace-grade materials.
Improved wear resistance, oxidation resistance, and thermal stability at high temperatures.
Speeds typically range from 50 to 150 m/min, depending on material and tool diameter.
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