Truncated Tip Strength
Removing the pointed tip reinforces the cutting end for higher axial chip loads and feed rates than a comparable sharp point.
Tipped-off engraving cutters combine a V-groove profile with a flat-bottom cutting geometry. A ground micro-flat removes the fragile zero-radius point and provides a stronger tip for repeated marking cycles.
Removing the pointed tip reinforces the cutting end for higher axial chip loads and feed rates than a comparable sharp point.
The micro-flat forms a consistent flat-bottom groove width when cutting depth is controlled.
Precision-ground cutting lips shear material to create crisp wall transitions and clean line edges.
Balanced single-flute and 2-flute profiles help limit runout at high spindle speeds.
Truncated flat geometry reduces the point-chipping risk associated with sharp-pointed cutters.
The defined tip flat helps maintain groove width when workpiece Z-height is controlled.
Micro-ground flutes support clean cuts in tough metals and can reduce manual deburring.
Available in 30°, 45°, 60°, and 90° V-profiles for different marking requirements.
The reinforced tip core supports higher feed rates and deeper passes than a comparable sharp-pointed geometry.
| Specification | Range / Details |
|---|---|
| Shank Diameters | 1/8", 3/16", 1/4", and 6 mm |
| Included Angles | 30°, 45°, 60°, and 90° V-profiles |
| Tip Flat Sizes | 0.005", 0.010", 0.015", 0.020", and 0.030"+ |
| Flute Geometry | Single-flute half-round, D-bit, or 2-flute flat-V |
| Shank Style | Straight cylindrical |
| Operation Type | Flat-bottom text engraving, serialization, and shallow pocketing |
| Material / Coating | Best For | Key Advantage |
|---|---|---|
| Micro-Grain Carbide | Stainless steel, brass, aluminum, titanium, and plastics. | Core hardness helps resist edge rounding and maintain the micro-flat geometry. |
| TiAlN / AlTiN Coating | Hardened tool steels, stainless steel, and high-temperature alloys. | Thermal stability helps protect the micro-flat tip from friction heat. |
| DLC / ZrN Coating | Aluminum, copper, acrylics, and non-ferrous alloys. | Low friction helps reduce galling and material welding at the cutting edge. |
Micro-grain carbide supports tip rigidity, TiAlN or AlTiN helps manage heat in ferrous alloys, and DLC or ZrN reduces friction in non-ferrous materials and acrylics.
Integrated into cycles for part marking, serialization, and flat-bottom lettering.
Used at elevated spindle speeds for V-carving and plate engraving.
Mounted in live-tooling spindles for radial and axial identification text on turned parts.
Cuts legible flat-bottom text, serial numbers, and logos in metal tags and machine plates.
Applies 2D matrix codes, alignment scales, and part numbers on production parts.
Scribes wide isolation channels on printed circuit boards.
Clears narrow, shallow background cavities in metal stamp dies and faceplates.
A pointed cutter terminates at a zero-radius point for very narrow lines. A tipped-off cutter has a ground flat that reinforces the tip, supports higher feeds, and creates flat-bottomed characters.
Choose a smaller 0.005" to 0.010" flat for small text, fine line work, and compact serial numbers. Select a larger 0.020" to 0.030"+ flat for bold lettering, wider PCB isolation channels, or shallow background pockets.
Removing the fragile point helps the tool maintain a defined tip geometry through production. Stable tip geometry supports consistent character line widths and depth profiles when the process is properly controlled.
The source lists spindle speeds from 15,000 to 35,000 RPM and notes that the reinforced flat supports higher feeds and deeper cuts than a sharp tip. Final parameters depend on the flat size, material, setup, and machine.
Bauron can review custom included angles, micro-flat widths, extended shank reach, and application-specific TiAlN or DLC coatings.
Bauron provides design and engineering support for custom geometries, specialized coatings, and application-specific tipped-off engraving requirements.
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