M.A. Ford
M.A. Ford CDACRM0900 Cyclone Drill for Aluminum 5X 2 Flute Coolant Fed
A coolant-fed cyclone drill for aluminium with 2-flute geometry and 5× reach
- Designed for aluminium machining with Cyclone series geometry
- 5x diameter drilling depth extends reach in deep holes
- Two-flute configuration promotes efficient chip evacuation
- Coolant-fed design delivers lubrication directly to cutting zone
- Manufactured by M.A. Ford for professional workshop use
M.A. Ford CDACRM0900 Cyclone Drill
The M.A. Ford CDACRM0900 is a solid-carbide Cyclone drill engineered for high-performance drilling in aluminium. Its 5x diameter flute length and through-coolant design support deep-hole accuracy and efficient chip evacuation in production environments.
Suited for CNC aluminium work needing coolant-fed
Shops without through-spindle coolant capability cannot use the internal coolant channels. Buyers needing a 3x or 8x flute length, a different diameter, or a drill for steel and titanium should look at other tooling.
5x diameter flute length with through-coolant feed
This single specification determines whether the tool reaches your required depth and clears chips in your aluminium application. Verify the 5x length matches your hole depth and that your machine delivers coolant through the spindle.
Highlights
- Designed for aluminium machining with Cyclone series geometry
- 5x diameter drilling depth extends reach in deep holes
- Two-flute configuration promotes efficient chip evacuation
- Coolant-fed design delivers lubrication directly to cutting zone
- Manufactured by M.A. Ford for professional workshop use
Specifications
| Brand | M.A. FORD |
|---|
Questions about this item
How is the CDACRM0900 Cyclone Drill installed in a CNC machine, and what step is often missed?
Secure the shank in a precision collet or hydraulic holder, then verify coolant passages align before tightening; operators often skip the alignment check, causing coolant starvation.
What maintenance or replacement will the CDACRM0900 need after extended use in aluminum?
The two cutting edges will dull gradually; plan to regrind or replace the drill once flank wear reaches the manufacturer's limit, and inspect coolant holes for blockage each tool change.
What limit appears first when running the CDACRM0900 continuously at high feed?
Heat buildup at the cutting zone typically becomes the limiting factor before tool deflection, so maintain full coolant flow and monitor spindle load for sudden increases.
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