Direct Draft-Angle Machining
Cuts angled cavity walls and draft features directly to reduce machining cycles.
A tapered end mill has cutting flutes that taper at a precise angle from the major shank diameter to a smaller end diameter. Unlike straight end mills that use step-milling passes or multi-axis tilting to form angled walls, tapered end mills can cut the specified draft angle on a vertical face in one pass.
Cuts angled cavity walls and draft features directly to reduce machining cycles.
The body widens toward the shank, increasing stiffness compared with a straight-shank tool.
Flat-bottom, corner-radius, and ball-nose tips match different pocket-floor geometries.
High-rake angular flutes shear metal and help control vibration inside deep mold cavities.
Removes incremental Z-level stepovers and can reduce draft-wall finishing time.
The conical body provides core strength for deeper axial cuts.
Continuous angular edge contact produces a smooth wall finish and can reduce hand polishing.
Per-side taper angles from 0.5° to 20° cover a range of blueprint callouts.
Micro-grain carbide construction resists heat during continuous high-speed passes.
| Specification | Range / Details |
|---|---|
| Tip Diameters | 1/32" to 3/4"+; metric 0.8 mm to 20 mm+ available |
| Taper Angles per Side | 0.5°, 1°, 1.5°, 2°, 3°, 5°, 7°, 10°, 15°, and 20° standard tapers |
| Tip Profile Options | Square flat end, corner radius (bull nose), or full ball nose |
| Flute Count | 2, 3, or 4 flutes with material-specific geometries |
| Shank Style | Straight cylindrical or reinforced tapered shank |
| Operation Type | Draft-angle cavity milling, tapered slotting, and die sinking |
| Material / Coating | Best For | Key Advantage |
|---|---|---|
| Solid Carbide | Hardened tool steels, stainless steel, and titanium. | Rigidity helps limit flex on deep angled walls. |
| TiAlN / AlTiN Coating | Tough alloy steels, cast iron, and dry high-heat milling. | Thermal hardness protects angled cutting lips during production. |
| DLC / ZrN Coating | Aluminum, brass, copper, and non-ferrous plastics. | Helps prevent soft material from galling or welding on tapered flutes. |
Solid carbide provides rigidity, TiAlN or AlTiN supports ferrous high-heat milling, and DLC or ZrN reduces galling in aluminum and other non-ferrous materials.
Cut draft angles without requiring 5-axis motion.
Run multi-axis toolpaths for continuous draft-angled surface sculpting.
Perform draft milling on composite patterns, aluminum plates, and engineering plastics.
Machines release draft angles on plastic mold cavities and die-casting cores.
Cuts conical slots, dovetail preparation channels, and angled keyseats.
Mills angled lightening pockets and draft-angled ribs in aerospace structures.
Shapes draft-angled wood, composite, or metal patterns for sand casting.
A tapered end mill cuts a specified draft angle on a vertical wall in one continuous pass, avoiding the step marks and machine time associated with incremental Z-level contouring.
Taper is usually specified per side relative to the tool centerline. Confirm whether the CAM input expects the per-side angle or the total included angle, which is twice the per-side value.
A square-end tapered mill has a flat tip for flat-bottom pockets with angled walls. A tapered ball nose has a spherical tip for contoured floors and fillet transitions.
Micro-grain carbide tools with AlTiN or nACo coatings are designed for pre-hardened and hardened steels such as H13, D2, and P20 up to 65 HRC.
Bauron can engineer non-standard taper angles, custom tip radii, extended neck reach, and wear coatings for CAD-defined applications.
Bauron provides design and engineering support for tooling requirements. The engineering team works with customers on custom geometries, specialized coatings, and complex machining challenges.
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