M.A. Ford
M.A. Ford Twister Micro-Tuff Drill 2.35 mm
Twister Micro-Tuff drill in 2.35 mm diameter for precision hole-making
- Micro-Tuff design resists breakage in hard materials
- 35 mm diameter suits precision drilling tasks
- Twister geometry improves chip evacuation
- M.A. Ford manufacturing ensures consistent quality
- California Proposition 65 warning included for safety compliance
Micro-Tuff Drill 2.35 mm
The M.A. Ford Twister Micro-Tuff Drill is a precision cutting tool with a 2.35 mm diameter. It is designed for machinists and technicians who need accurate small-hole drilling in metal or composite materials. This new accessory fits standard power and pneumatic tool holders.
Thermals noise and power draw
Heat and noise levels depend entirely on the host machine and the workpiece material. The drill itself adds no independent power draw or cooling requirement. Operators should follow the tool holder and machine manufacturer guidelines for speed and feed rates.
Bundled accessories and software
No accessories, software or documentation are included with this drill. The supplier notes that orders of $75 or more ship free and that the item ships directly from the manufacturer. California Proposition 65 warnings apply regarding cancer and reproductive harm.
Highlights
- Micro-Tuff design resists breakage in hard materials
- 35 mm diameter suits precision drilling tasks
- Twister geometry improves chip evacuation
- M.A. Ford manufacturing ensures consistent quality
- California Proposition 65 warning included for safety compliance
Specifications
| Brand | M.A. FORD |
|---|
Questions about this item
How do I install the 2.35 mm Twister Micro-Tuff drill bit and what step is often missed?
Secure the shank fully in the chuck and tighten each jaw evenly; the step most often missed is confirming true running with a dial indicator before cutting.
What maintenance will the 305M0235AM bit need during its service life?
Inspect the cutting edges after each job, sharpen or replace when the corners show wear, and wipe the flute clean to prevent chip packing.
What limit appears first when the 2.35 mm drill runs continuously in tough material?
Heat builds at the tip fastest, so the bit loses hardness before the shank or flute geometry becomes the bottleneck.
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