OptiMill®-HPC-Pocket
Maximum efficiency in pocket plunge milling
The milling tools of the OptiMill®-HPC‑Pocket family offer the in ultimate precision and efficiency in pocket milling. Both tools are equipped with an built-in drill tip that is particularly well suited to versatile applications such as helix milling, grooving and inclined plunging. In both milling cutters, large chip spaces ensure rapid and reliable chip removal, even at high machining volumes.
OptiMill®-Uni‑HPC‑Pocket – for versatile applications in steel, cast iron and stainless steel
OptiMill®-Alu‑HPC‑Pocket – specially optimised for aluminium and non‑ferrous metals
Wide range of applications
Innovative point thinning
OptiMill®-HPC-Pocket family
80% shorter machining time
When milling an aluminum structural component from the aerospace industry, a significant increase in productivity was achieved with the OptiMill-Alu-HPC-Pocket. Compared to a conventional market solution, the machining time was reduced from 70 minutes to just 14 minutes.
This performance is driven by the interaction of tool and strategy:
Ramping (45°) enables stable and process-reliable plunging
Full-slot milling (ae = 16 mm) maximizes the material removal rate
Increased cutting parameters and large depths of cut significantly boost efficiency
While the competitor tool requires multiple passes with low depths of cut, MAPAL fully utilizes the tool’s potential through deep engagement and highly dynamic machining.
Result:
Significantly reduced machining time combined with high process reliability – ideal for the cost-effective machining of large aluminum volumes.
Material: Aluminium 2124 Außenkühlung: Emulsion 8 % | 20bar
Marktbegleiter
Schaftfräser: Ø 16 mm | z3
Bearbeitungsstrategie: 20 Zustellungen erforderlich
Schnittdaten:
Vc: 300 m/min
fz: 0,110 mm
ap: 2 mm
ae: 16 mm
Ergebnis: Bearbeitungszeit 70 Minuten
MAPAL
OptiMill-Alu-HPC-Pocket: Ø 16 mm | z3
Bearbeitungsstrategie: Rampenfräsen (45°) | Vollschnitt
Schnittdaten:
Ramping (45°): Vollschnitt:
Vc: 220 m/min Vc: 401,9 m/min
fz: 0,100 mm fz: 0,125 mm
ap: 22 mm ap: 17 mm
ae: 16 mm ae: 16 mm
Ergebnis: Bearbeitungszeit 14 Minuten durch deutlich erhöhte Schnittwerte und stabiler Eintauch-Strategie.