M.A. Ford
M.A. Ford Cyclone Xd 3X Coolant Fed Double Margin Drill 3/16
A coolant-fed double-margin drill for 3/16-inch holes with 3X diameter depth capability
- 3X coolant-fed design clears chips efficiently
- Double-margin geometry improves hole straightness
- 3/16 inch diameter suits precision drilling tasks
- Cyclone Xd series built for demanding applications
- Prop 65 warning informs safe handling practices
Cyclone Xd 3X Coolant Fed Drill
This M.A. Ford Cyclone Xd drill is a coolant-fed, double-margin cutting tool designed for precision hole-making. The 3/16 inch diameter suits machining operations that demand accurate, straight holes with efficient chip evacuation. Internal coolant delivery helps manage heat and prolong tool life in demanding materials.
Suited for CNC and high-precision work
Machinists running CNC centres or rigid manual setups will benefit from the double-margin design that improves hole straightness and surface finish. Workshops without through-spindle coolant capability or those needing larger diameters should consider alternative tooling.
3/16 inch diameter defines the application
The 3/16 inch cutting diameter is the primary specification that determines whether this drill matches the required hole size. Verify the exact dimension against your drawing before ordering to ensure correct fit.
Highlights
- 3X coolant-fed design clears chips efficiently
- Double-margin geometry improves hole straightness
- 3/16 inch diameter suits precision drilling tasks
- Cyclone Xd series built for demanding applications
- Prop 65 warning informs safe handling practices
Specifications
| Brand | M.A. FORD |
|---|
Questions about this item
What machine spindle and coolant system do I need to run this 3X coolant-fed drill?
You need a CNC or rigid milling machine with through-spindle coolant capability and a 3/16 inch tool holder to match the shank.
Can I use this Cyclone Xd drill in a standard drill press without through-coolant?
It is designed for high-pressure through-coolant operation; running it without coolant will reduce tool life and may cause overheating in deeper holes.
How do I confirm the double-margin geometry is performing correctly after the first holes?
Inspect the hole for straightness and consistent finish, and verify the two margin lands show even wear without chipping after the initial test cuts.
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