M.A. Ford
M.A. Ford CXDCR 1750AP 17.50 mm Cyclone Xd Coolant Fed Double Margin Drill
A 17.50 mm coolant-fed double-margin drill designed for high-efficiency chip evacuation
- 50 mm diameter suits precise hole sizing
- Coolant-fed design clears chips for deeper drilling
- Double margin construction improves hole straightness
- Cyclone Xd geometry reduces cutting forces
- Brand new M.A. Ford quality for reliable performance
17.50 mm Cyclone Xd coolant-fed drill
This 17.50 mm diameter drill uses the Cyclone Xd design with internal coolant channels and a double margin for guided cutting. It targets machine-shop operators who need a dedicated 5× diameter tool for deep-hole drilling in ferrous and non-ferrous alloys.
Coolant-fed 5× length constraint
The tool requires a continuous, pressurised coolant supply through the spindle; without it the cutting edges overheat and the double margins lose guidance. Maximum drilling depth is fixed at five times the 17.50 mm diameter, so the workpiece and fixture must accommodate that reach.
Check spindle coolant and holder runout
Verify the machine spindle delivers filtered coolant at the pressure the tool maker specifies for 17.50 mm carbide drills. Confirm the holder runs within the runout tolerance required for double-margin tools, and ensure the workpiece clamping allows the full 5× depth without interference.
Highlights
- 50 mm diameter suits precise hole sizing
- Coolant-fed design clears chips for deeper drilling
- Double margin construction improves hole straightness
- Cyclone Xd geometry reduces cutting forces
- Brand new M.A. Ford quality for reliable performance
Specifications
| Brand | M.A. FORD |
|---|
Questions about this item
Is the 17.50 mm diameter the right choice for my hole size?
Yes, the 17.50 mm diameter matches the nominal hole you need to produce; select this drill when the finished hole must be 17.50 mm.
What does the 5X designation mean for drilling depth on this 17.50 mm drill?
The 5X rating indicates the flute length allows drilling up to five times the diameter in a single pass.
How does the coolant-fed design affect chip evacuation on this double margin drill?
Internal coolant channels deliver fluid directly to the cutting edges, improving chip evacuation and tool life in deep holes.
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