M.A. Ford
M.A. Ford Twister Coolant 10X Micro Drill 2.30 mm
A 2.30 mm micro drill with 10x coolant-through capability for precise deep-hole drilling
- 10x coolant-through design clears chips from deep holes
- 30 mm diameter suits precise micro-drilling tasks
- Twister geometry improves hole accuracy and finish
- California Prop 65 warning lists cancer risk chemical
- California Prop 65 warning lists reproductive harm chemical
M.A. Ford 2.30 mm Micro Drill
The M.A. Ford Twister Coolant 10X Micro Drill has a 2.30 mm diameter and a 10X length-to-diameter ratio. It is manufactured by M.A. Ford and classified as a power and pneumatic accessory. The tool is supplied new and ships directly from the manufacturer.
Suited for deep micro holes with coolant
This drill suits operators who need a 2.30 mm micro drill with through-coolant capability for deep-hole drilling. It is not for users who require a different diameter, a non-coolant style, or a shorter length-to-diameter ratio. Buyers needing other specifications should look at alternative tooling.
2.30 mm diameter with 10X ratio
The defining specification is the 2.30 mm cutting diameter combined with the 10X length-to-diameter ratio. This determines the reach and stability in deep micro drilling applications. The product carries a California Proposition 65 warning for chemicals known to cause cancer and reproductive harm.
Highlights
- 10x coolant-through design clears chips from deep holes
- 30 mm diameter suits precise micro-drilling tasks
- Twister geometry improves hole accuracy and finish
- California Prop 65 warning lists cancer risk chemical
- California Prop 65 warning lists reproductive harm chemical
Specifications
| Brand | M.A. FORD |
|---|
Questions about this item
Which Twister Coolant 10X micro drill diameter should I choose?
The drill is offered in a 2.30 mm diameter; select it when your hole size matches that dimension.
What does the 10X designation mean once the drill is in the machine?
10X indicates the flute length is ten times the 2.30 mm diameter, allowing deeper holes per pass.
How does the coolant-through design affect chip evacuation?
Internal coolant channels flush chips from the 10× flute length, improving evacuation in deep micro holes.
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