Alternating Helical Shear
Alternating right- and left-hand tooth angles shear material progressively on opposing sides of the slot.
A staggered tooth keyseat cutter is a Woodruff-style tool for radial slotting in tough materials. Alternating axial rake angles distribute cutting engagement and disrupt the harmonics that can cause chatter and tool deflection in straight-tooth cutters.
Alternating right- and left-hand tooth angles shear material progressively on opposing sides of the slot.
Staggered engagement disrupts resonant vibration during demanding slotting passes.
Alternating rake angles direct chips away from the cutting zone to reduce chip packing.
Ground tooth margins support parallel slot widths for controlled drive-key fit.
Alternating axial teeth disrupt harmonic vibration and support smoother slot walls.
Improved chip clearance can support higher radial feed rates than straight-tooth geometry.
Progressive shearing can lower spindle torque and lateral tool pressure.
Precision-ground tooth profiles support repeatable keyway dimensions.
Efficient chip ejection limits chip recutting and helps protect cutting edges from thermal wear.
| Specification | Range / Details |
|---|---|
| Cutter Diameter Range | 1/2" to 2"+; standard ANSI Woodruff sizes 404 to 1212+ |
| Cutter Width Range | 1/16" to 1/2"+; metric 2 mm to 12 mm+ available |
| Tooth Geometry | Staggered tooth with alternating right- and left-hand axial helix |
| Flute Count | 8 to 18+ peripheral teeth, varying by head diameter |
| Shank Style | Straight cylindrical or Weldon flat shank |
| Operation Type | Radial keyway slotting, Woodruff seating, and snap-ring grooving |
| Material / Coating | Best For | Key Advantage |
|---|---|---|
| Solid Carbide | Stainless steel, titanium, hardened steels, and high-volume runs. | High rigidity limits deflection and supports controlled slot width. |
| HSS-Co (Cobalt) | Manual milling setups, interrupted cuts, and medium production runs. | Shock toughness helps resist tooth chipping during demanding radial cuts. |
| TiAlN / AlTiN Coating | Alloy steels, cast iron, and high-temperature dry milling. | Thermal hardness helps protect peripheral cutting edges from friction wear. |
Solid carbide provides rigidity for production slotting, HSS-Co provides shock toughness for manual or interrupted cuts, and TiAlN or AlTiN supports high-heat ferrous machining.
Run automated keyway-slotting cycles in shafts and housings.
Mill axial and radial keyways directly on turned shafting in one setup.
Used in maintenance and repair facilities for manual keyseat cutting.
Cuts Woodruff keyways and parallel keyseats in high-tensile drive shafts.
Machines internal and external snap-ring grooves in alloy bores and shafts.
Mills narrow, deep slots in stainless steel, titanium, and heat-treated tool steel.
Prepares keyways on gearbox shafts, pump rotors, and drive couplings.
Straight teeth engage across their face at the same axial orientation. Alternating helical teeth shear progressively, reducing cutting resistance and vibration while improving slot-wall finish in tough materials.
No. Standard keyseat cutters are non-center-cutting and are designed for radial in-feed and side milling. Position the cutter outside the workpiece or in a prepared clearance area before feeding radially.
Choose solid carbide for rigid high-speed CNC production, tight keyway requirements, or hard materials above 30 HRC. Choose HSS-Co for less rigid manual machines, interrupted cuts, or lower-volume repair work where impact toughness is important.
ANSI Woodruff cutter numbers encode nominal width and diameter. In the source example, a #606 cutter is 6/32" (3/16") wide and 6/8" (3/4") in diameter. Confirm the selected size against the key and part drawing.
Bauron can review non-standard head diameters, custom slot widths, extended neck-clearance lengths, and application-specific TiAlN or nACo coatings.
Bauron provides design and engineering support for custom geometries, specialized coatings, and application-specific staggered-tooth keyseat requirements.
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