M.A. Ford
M.A. Ford Twister Gp 3X Drill 9.60Mm 22637790
9.60 mm Twister Gp 3X drill bit for high-performance drilling in metal
- 60 mm diameter suits a wide range of drilling tasks
- Twister Gp 3X geometry improves chip evacuation
- M.A. Ford manufacturing ensures consistent cutting performance
- New condition guarantees full tool life from first use
- California Proposition 65 notice informs safe handling practices
M.A. Ford Twister Gp 3X Drill
The M.A. Ford Twister Gp 3X Drill is a precision cutting tool designed for professional machining applications. It suits engineers and metalworkers who require accurate holemaking in demanding materials.
9.60 mm diameter for specific fits
The 9.60 mm diameter determines the exact hole size produced, ensuring compatibility with downstream tapping or fastening operations. Its solid construction supports consistent performance through repeated use in workshop environments.
Manufacturer part number 22637790
This identifier confirms the exact specification when ordering replacements or matching tooling lists. California Proposition 65 warnings indicate the product contains chemicals known to cause cancer and reproductive harm.
Highlights
- 60 mm diameter suits a wide range of drilling tasks
- Twister Gp 3X geometry improves chip evacuation
- M.A. Ford manufacturing ensures consistent cutting performance
- New condition guarantees full tool life from first use
- California Proposition 65 notice informs safe handling practices
Specifications
| Brand | M.A. FORD |
|---|
Questions about this item
Does the 9.60 mm Twister GP 3X drill use a standard round shank that fits any drill chuck?
Yes, it has a plain round shank that clamps in any standard three-jaw drill chuck sized for 9.60 mm or larger.
What clearance is needed for the 9.60 mm Twister GP 3X drill to enter a workpiece without binding?
The drill requires a straight hole or pilot at least 9.60 mm in diameter and enough depth for the flute length to clear chips.
What is the correct way to start the 9.60 mm Twister GP 3X drill so it does not walk on the surface?
Centre-punch the location, apply steady axial pressure, and begin at low RPM until the point engages before increasing speed.
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