
Seco Feedmax™ 02731645 SD206 Micro Drill, 0.8 mm Drill - Metric, 0.0315 in Drill - Decimal Inch, 3 mm Shank, 2 Flutes
SECO 02731645
$163.08
/ EA
Out of Stock
- Drill Bit Size: 0.0315 in
- Drill Bit Size - Metric: 0.8 mm
- Cutting Direction: Right Hand
- Cutting Depth: 6xD
- Finish/Coating: PVD/TiAlN+TiN Coated
- Material: Solid Carbide
- Number of Flutes: 2
- Overall Length - Metric: 38 mm
- Point Angle: 140 deg
- Point Type: Self-Centering
- Shank Size: 3
- Shank Type: Cylindrical
- Flute Type: Spiral
Seco Feedmax™ is our latest generation of high performance solid carbide drills. They offer a unique combination of state-of-the-art carbide, coating and geometry technology.
- GDG Code: B79
- Solid carbide provides better rigidity than high speed steel, it is extremely heat resistant and used for high speed applications
- Multilayer Titanium Aluminum Nitride (TiAlN) is a blended coating that is more efficient than TIN, it offers a high level of wear resistance at higher cutting speeds and used on high alloy steels and cast iron
- 65 deg tool cutting edge
- Spiral flutes are constructed of a higher flute angle to remove chips easier
- High productivity and low cost per hole
- Up to 0.7 mm/r cutting feed
- Up to 220 m/min cutting speed
- High hole quality with no need for centre drilling operations
- High hot hardness with special TiAlN coating
- Strong cutting edge
- High cutting edge quality
- High strength carbide rod minimises risk for breakages
- Low friction coating (TiAlN) for improved chip evacuation
- Protective corner chamfer
- External coolant
- IT9 hole tolerance
- ANSI Code: SD206-0.80-4.8-3R1
- ISO Code: SD206-0.80-4.8-3R1
For holemaking applications
Seco Feedmax Micro Drill | Series: SD206 | 0.8 mm Dia | 38 mm Overall Length | 6xD Cutting Depth | 2 Flutes | Spiral Flute | 6.7 mm Flute Length | 3 mm Shank | Cylindrical Shank | 140 deg Point | Self-Centering Point | Right Hand Cutting | Solid Carbide Cutting Edge | Solid Carbide | PVD/TiAlN+TiN Coated | Applicable Materials: Cast Iron | Non-Ferrous Materials and Plastic