M.A. Ford
M.A. Ford CDACRM1070 Cyclone Drill Aluminum 5X 2 Flute Coolant Fed
A 5× diameter aluminium drill with two flutes and internal coolant feed
- 5x reach for deep aluminum holes
- Two-flute design clears chips efficiently
- Coolant-fed operation reduces heat buildup
- Cyclone geometry optimised for aluminum alloys
- M.A. Ford precision for reliable performance
Cyclone Drill for Aluminium Machining
The M.A. Ford CDACRM1070 is a solid-carbide drill built for high-volume aluminium work. Its 5× diameter flute length and through-coolant channels target production cells that need deep, straight holes without peck cycles.
Two-Flute Geometry and Coolant Delivery
Two helical flutes and internal coolant ports combine to evacuate chips and suppress built-up edge in soft alloys. The design reduces cycle time by allowing continuous feed rates where conventional drills would stall or wander.
Proposition 65 Chemical Notice
This product contains substances identified under California Proposition 65 as causing cancer and reproductive harm. Buyers who require RoHS-compliant or substance-free tooling for regulated assemblies must evaluate alternative drill series.
Highlights
- 5x reach for deep aluminum holes
- Two-flute design clears chips efficiently
- Coolant-fed operation reduces heat buildup
- Cyclone geometry optimised for aluminum alloys
- M.A. Ford precision for reliable performance
Specifications
| Brand | M.A. FORD |
|---|
Questions about this item
How often should the 5X coolant-fed carbide drill be inspected or replaced in high-volume aluminum work?
Inspect the cutting edges after each shift; replace the drill when flank wear reaches the maximum allowance for your tolerance band.
What stops the CDACRM1070 from running continuously in deep-hole aluminum drilling?
Chip evacuation capacity in the 2-flute coolant channels becomes the limiting factor once hole depth exceeds five times diameter.
How much noise and heat does the Cyclone drill generate during all-day CNC cycles?
Expect typical high-speed carbide drilling sound levels; coolant flow through the internal channels carries away most cutting heat at the tool tip.
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