Optimill-Uni-HPC in der Bearbeitung

OptiMill®-Uni-HPC

Neue Generation für maximale Prozesssicherheit

MAPAL stellt die dritte Generation des Vollhartmetallfräsers OptiMill-Uni-HPC vor – optimiert für automatisierte Fertigung und hohe Spanleistung.
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    Konfigurierbare Schneideckenausführung

    • Fase für hohen Verschleißschutz 
    • Radien für endkonturnahe Bearbeitung
    • Scharfe Schneidkantenausführung
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    Optimierte Geometrie

    • Stabile Bearbeitung bei hohen Zustelltiefen
    • Sehr gute Spanbildung
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    Neu entwickelter Schneidstoff

    • Geringeres Risiko von Werkzeugbruch
    • Höhere Prozesssicherheit bei dynamischer Bearbeitung
    • Hohe Zähigkeit bei Schlagbelastung
  • Photo of Optimill-Uni-HPC with integrated rib splitter
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    Integrierter Spanteiler

    • Kurze, leicht abführbare Späne
The new OptiMill-Uni-HPC for machining steel, stainless steel and castings has been specially
developed for automated processes and meets the highest requirements for process reliability, stability and resistance to wear.
The newly developed cutting material has a high ductility, reducing the risk of tool breakage.
Combined with wear-resistant coatings and optimised geometry, this results in a tool that’s ultra-reliable, even in dynamic machining.
A version with an integrated chip breaker is a new addition to the OptiMill-Uni-HPC range. It
creates short chips that are easy to remove – offering clear benefits for air cooling and high
cutting performance and enabling high infeed depths.
The result: Longer machine running times, lower monitoring efforts and higher process reliability – ideal for unmanned shifts and automated workflows.
The picture shows 3 OptimillUniHPC milling cutters

From September 2025, the milling cutter is available in three versions:

  • Short without chip breaker (ø 3–20 mm)
  • Long without chip breaker (ø 3–25 mm)
  • Long with chip breaker (ø 6–25 mm)
This sees MAPAL draw on the targeted development of a tried-and-tested concept – for more
efficiency, process reliability and versatility in modern machining.