Maykestag Turbo-Cut Allround VHM End Mill 8mm Long 4 Flute MAXDUR

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Maykestag Turbo-Cut Allround VHM End Mill 8mm Long 4 Flute

Professional 8mm Turbo-Cut Allround high-performance solid-carbide end mill featuring four flutes, Type N geometry, an unequal 41°–43° spiral angle, relieved neck, long-series construction and Maykestag MAXDUR coating for a broad range of professional milling applications.

The Maykestag Code 8023 Turbo-Cut Allround is a high-performance VHM solid-carbide end mill developed for versatile machining across a particularly broad range of materials. Its four-flute cutting geometry combines an unequal spiral configuration with a relieved neck and long-series design, providing a strong balance between cutting performance, tool rigidity and accessibility. The 8mm cutter is manufactured with a precision h10 cutting diameter, h6 shank and a 45° cutting-edge chamfer.

What is an unequal-helix high-performance end mill? An unequal-helix end mill uses slightly different flute spiral angles rather than identical geometry on every cutting edge. On the Turbo-Cut Allround, the spiral angle varies between 41° and 43°. This geometry is designed to provide a controlled high-performance cutting action across a variety of milling operations and suitable workpiece materials.

Product highlights

  • VHM solid-carbide construction: Rigid carbide construction provides the dimensional stability and cutting-edge strength required for professional high-performance milling.
  • Turbo-Cut Allround: Developed by Maykestag as a versatile high-performance cutter for a broad spectrum of machining applications and materials.
  • HPC+ geometry: High-performance cutting geometry designed for productive professional milling applications.
  • Four-flute design: Four cutting edges provide an efficient cutting action for general-purpose and high-performance milling.
  • Unequal spiral geometry: 41°–43° spiral angles provide the characteristic unequal-helix configuration of the Turbo-Cut Allround design.
  • Type N geometry: Normal cutting geometry designed for versatile machining across suitable material groups.
  • Long-series construction: Extended geometry provides additional reach where a standard-length cutter may not provide sufficient access.
  • Relieved neck: The reduced 7.50mm neck diameter provides clearance behind the cutting section for deeper or restricted-access milling.
  • 45° cutting-edge chamfer: The 8mm cutter incorporates a 0.20mm chamfer at 45°.
  • MAXDUR coating: Maykestag MAXDUR coated cutting surfaces are designed for demanding professional machining applications.
  • DIN 6527 L: Manufactured according to the specified long-series end-mill standard.
  • DIN 6535-HA shank: Precision cylindrical shank manufactured to h6 tolerance.

Why Choose Maykestag?

Maykestag is an Austrian cutting-tool manufacturer specialising in precision tools for professional machining. Accurate control of carbide quality, cutting geometry, dimensional tolerances and surface treatment is especially important with high-performance milling cutters, where small differences in geometry can directly affect machining stability, accuracy and tool performance.

The Code 8023 Turbo-Cut Allround series combines solid-carbide construction, four cutting edges, unequal 41°–43° spiral geometry, a relieved neck and MAXDUR coating. Its exceptionally broad Maykestag application rating makes the series particularly useful where workshops need one high-performance milling family capable of working across numerous steel, stainless-steel and non-ferrous material groups.

Designed for Versatile High-Performance Milling

The Turbo-Cut Allround geometry is designed for a variety of milling operations while maintaining a strong, rigid four-flute cutting section. The unequal spiral configuration helps create a controlled cutting action, while the relieved neck increases clearance behind the cutting edges during deeper machining. The long-series construction provides additional reach, and the MAXDUR coating supports the cutter in demanding machining conditions. For optimum performance and tool life, cutting speed, feed rate and machining parameters should be selected according to the workpiece material and application.

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