Mills / Keyseat cutters

Full Radius Keyseat Cutters

Full radius keyseat cutters are rotary form tools with convex peripheral cutting profiles for machining round-bottomed keyways, O-ring grooves, and stress-relieved internal slots.

What Are Full Radius Keyseat Cutters and How Do They Work?

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A full radius keyseat cutter is a form cutter for slots with rounded concave bottoms rather than sharp 90-degree corners. Its 180-degree convex peripheral profile distributes contact through a continuous curve and forms the groove radius in one radial cutting path.

Radial Form Engagement

The tool feeds radially into shafts or bore cavities to cut full-radius keyways and seal seats.

Stress-Relieved Slotting

The convex profile removes sharp slot-root corners and reduces local stress concentration.

Precision Groove Formation

Peripheral teeth form parallel side walls and a centered concave bottom radius.

Reduced-Neck Clearance

The narrow neck clears adjacent shoulders during radial in-feed.

Key Features and Benefits of Full Radius Keyseat Cutters

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Reduced Stress Concentration

Rounded internal corners distribute load more gradually than sharp slot roots in torsion-loaded parts.

Controlled Form Accuracy

Precision profile grinding supports repeatable radius geometry across production parts.

Smooth Surface Quality

High-rake peripheral teeth support clean slot walls and smooth groove bottoms.

Stable Radial Cutting

Rigid tool geometry helps limit vibration during deep side-milling passes.

Material Versatility

Available tool materials and coatings support alloy steel, stainless steel, titanium, brass, and engineering plastics.

Full Radius Keyseat Cutters Specifications

Full Radius Keyseat Cutters Specifications
SpécificationPlage / Détails
Cutter Diameter Range1/2" to 1-1/2"+; metric 12 mm to 40 mm+ available
Cutter Width (2 × Radius)1/16" to 3/8"+; full radius equals half the cutter width
Profile Form180° full convex radius geometry
Flute Count6 to 14+ peripheral teeth
Shank StyleStraight cylindrical or Weldon flat shank
Operation TypeRadial full-radius keyseat slotting, O-ring grooving, and fluid-channel milling

Materials and Coatings Available for Full Radius Keyseat Cutters

Materials and Coatings Available for Full Radius Keyseat Cutters
Matière / RevêtementIdéal pourAvantage clé
Solid CarbideStainless steel, titanium, hardened steels, and high-volume runs.High stiffness limits deflection and supports controlled radius geometry.
HSS-Co (Cobalt)Interrupted cuts, manual machines, and lower-volume job-shop work.Shock toughness helps resist tooth chipping during demanding radial cuts.
TiAlN / AlTiN CoatingTough alloy steels, cast iron, and high-heat dry milling.Oxidation resistance helps protect peripheral teeth from friction wear.

Solid carbide provides stiffness for production grooving, HSS-Co provides shock toughness for manual or interrupted cuts, and TiAlN or AlTiN supports high-heat ferrous machining.

Which Machines Use Full Radius Keyseat Cutters?

CNC Machining Centers

Run automated full-radius slotting and O-ring grooving cycles.

Live-Tooling CNC Lathes

Mill radial and axial full-radius keyways directly on turned shafts.

Precision Manual Mills

Produce custom round-bottom keyways in prototype and repair work.

Applications and Industries for Full Radius Keyseat Cutters

Fraises en carbure revêtues sur une table devant une machine CNC avec jet d'arrosage
Stress-Relieved Keyseat Milling

Cuts round-bottomed keyways in high-torque drive shafts to reduce sharp-corner stress concentration.

O-Ring and Fluid-Seal Grooving

Machines round-bottomed internal and external O-ring channels for hydraulic fittings.

Oil and Fluid Distribution Slots

Cuts smooth, rounded oil-routing tracks along bearing journals and shaft sleeves.

High-Fatigue Fastener Retainers

Prepares rounded retaining-ring seats in aerospace actuator components.

Frequently Asked Questions About Full Radius Keyseat Cutters

What is the difference between standard and full-radius keyseat cutters?

A standard keyseat cutter uses a flat peripheral profile to cut a rectangular slot with sharp bottom corners. A full-radius cutter has a convex cutting profile that forms a smooth 180-degree concave slot bottom.

Why are full-radius keyseat cutters used for high-torque shafts?

Sharp internal corners can concentrate torsional stress and contribute to fatigue cracks. A full-radius groove distributes stress through a curve, reducing the slot-root concentration when specified by the component design.

Can a full radius keyseat cutter plunge axially?

No. These tools are non-center-cutting and are intended for radial in-feed and side milling. Position the cutter outside the workpiece or in a prepared clearance area before feeding radially.

How is the radius size specified?

The source defines the full radius as half the total cutter width. For example, a cutter with a 0.250" face width has a continuous 0.125" convex radius.

Does Bauron manufacture custom full radius keyseat cutters?

Bauron can review custom head diameters, face widths, neck-clearance lengths, and application-specific TiAlN coatings based on manufacturing drawings.

Ressource d'ingénierie partagée

Design and Engineering Support

Bauron provides design and engineering support for custom geometries, specialized coatings, and application-specific full-radius keyseat requirements.

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