2020 GF Mikron MILL P 800 U ST VERTICAL MACHINING CENTER

GF Mikron MILL P 800 U ST 2020 GF Mikron MILL P 800 U ST VERTICAL MACHINING CENTER equipment image

Equipment Overview

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OEM
GF
Model
Mikron MILL P 800 U ST
Year of Manufacture
2020
Category
VERTICAL MACHINING CENTERS

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Technical Description

The 2020 GF Machining Solutions Mikron MILL P 800 U ST is a 5-axis vertical machining center with simultaneous turning capability, manufactured by Georg Fischer Machining Solutions in Switzerland. The ST (Simultaneous Turning) designation indicates the machine's HSK-T63 spindle interface, which enables both high-speed milling and turning operations in a single five-axis setup, eliminating transfers between machine types for complex rotational and prismatic features. The machine provides X, Y, and Z travels of 31.5, 31.5, and 21.7 inches respectively, with a 500 x 730 mm worktable. The Step-TEC spindle delivers 36 kW (48 HP) at 20,000 RPM maximum speed. Optional pallet systems with 2, 7, 9, or 12 pallets enable continuous unmanned production. Tool magazine options range from 60 to 215 positions. Rapid traverse rates of 61 m/min (2,402 IPM) maximize throughput. CNC motion control is provided by the Heidenhain TNC 640 or Siemens 840D sl per customer specification. The machine weighs approximately 33,069 lbs (15,000 kg). The MILL P 800 U ST is a premium five-axis mill-turn platform targeting aerospace, medical, energy, and precision manufacturing requiring combined milling and turning in a single high-productivity setup.

Technical Attributes

Control System
Heidenhain iTNC 530
X-Axis Travel
31.5 ''
# of Axes
5
Table Size (LxW)
12.6 x 12.6
Y-Axis Travel
23.6 ''
Max Spindle Speed
36000 RPM
Spindle Power
25 HP
Z-Axis Travel
19.7 ''

Data Accuracy and Verification

Specifications and technical details are compiled from manufacturer documentation, historical records, and third-party industry sources. While care is taken to ensure accuracy, this information is provided for reference purposes only and may contain errors or omissions. Users should independently verify all details before relying on them.

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