2022 AKIRA SEIKI V2.5AXP VERTICAL MACHINING CENTER

AKIRA SEIKI V2.5AXP 2022 AKIRA SEIKI V2.5AXP VERTICAL MACHINING CENTER equipment image

Equipment Overview

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OEM
AKIRA SEIKI
Model
V2.5AXP
Year of Manufacture
2022
Category
VERTICAL MACHINING CENTERS

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Technical Description

The 2022 Akira Seiki V2.5AXP is a 3-axis vertical machining center from Akira Seiki's Performa V series, delivering enhanced performance in the V2.5 platform through the XP spindle and axis configuration. The machine features a BT-40 spindle taper with a 22 HP peak motor and a maximum spindle speed of 12,000 RPM, with oil chilling for sustained thermal stability. The worktable measures 910 by 400 millimeters (35.8 by 15.8 inches) with a standard workpiece load capacity of 800 kilograms. Axis travels are 760 mm (30 inches) in X, 445 mm (17.5 inches) in Y, and 520 mm (20.5 inches) in Z. Rapid traverse reaches 44 m/min in X and Y and 36 m/min in Z. A 28-tool arm-type ATC is standard with a chip-to-chip time of 2.2 seconds. The machine is controlled by the Akira Mi:845 system (Fanuc G-code compatible). Overall machine dimensions are approximately 106 by 87 inches (2,700 by 2,200 mm), with a machine weight of 4,123 kilograms (9,090 pounds). The 2022 build year represents the most recent production of this model, incorporating the latest Akira Seiki control system refinements, servo performance improvements, and thermal compensation updates. Standard equipment includes flood coolant, chip drawer, automatic lubrication, and full enclosure guarding.

Technical Attributes

Control System
Akira Mi:845 (Fanuc compatible)
Max Spindle Speed
12000 RPM
Table Size (LxW)
35.8 x 15.8
X-Axis Travel
30 ''
Y-Axis Travel
17.5 ''
# of Axes
3
Spindle Power
22 HP
Z-Axis Travel
20.5 ''

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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