Brand Name: | AMG |
Model Number: | Standard/Customized |
MOQ: | 3 |
Price: | Request Quote |
Attribute | Value |
---|---|
Name | Small T Slot Milling Cutter |
Type | Customized |
Coating | TiAIN, DLC/ZrN/Super Finish Coating |
Suitable for | Copper, stainless steel, glass, high hardness workpieces, semi-finishing and roughing, aluminum |
Flute | 4 Flutes |
AMG's small-size T-slot cutter is a high-performance tool specifically engineered for machining high-precision and high-strength materials in the aerospace industry. Manufactured using premium ultra-fine grain carbide and enhanced with advanced coating technologies, this cutter offers excellent wear resistance, anti-chipping performance, and thermal stability.
This tool is widely used for precision machining of aerospace parts such as engine components, structural frames, and fastener mounting slots. It is particularly effective for high-efficiency cutting and forming of tough materials like titanium alloys, nickel-based alloys, and stainless steel.
Item | Parameter Range |
---|---|
Head Diameter (D) | 2mm - 10mm |
Shank Diameter (d) | 4mm - 10mm |
Overall Length (L) | 50mm - 100mm |
Material | Ultra-fine grain carbide |
Coating Type | AlTiN / TiAlN / DLC and others |
The T-slot cutter features a unique "T"-shaped head design that allows it to cut both the bottom and sidewalls of a groove simultaneously. It effectively reaches into areas inaccessible to conventional end mills, especially hidden or recessed features. This design boosts machining efficiency and ensures precise, clean corners and consistent dimensions.
When selecting a T-slot cutter, consider the material being machined (e.g., titanium alloy, nickel alloy) to choose the appropriate coating and geometry. For tight and complex spaces, small-diameter, long-neck models are recommended. For better stability, reinforced shank versions are ideal. Verify spindle rigidity and ensure compatibility with cutting parameters. AMG offers custom tool development based on technical drawings or specific machining requirements to maximize cutting efficiency.