2017 MORI SEIKI ACCUMILL 4000 VERTICAL MACHINING CENTER

MORI SEIKI ACCUMILL 4000 2017 MORI SEIKI ACCUMILL 4000 VERTICAL MACHINING CENTER equipment image

Equipment Overview

Share Link
OEM
MORI SEIKI
Model
ACCUMILL 4000
Year of Manufacture
2017
Category
VERTICAL MACHINING CENTERS

Market Value Calculator

A+

Technical Description

The 2017 Mori Seiki ACCUMILL 4000 is a 3-axis vertical machining center from Mori Seiki's ACCUMILL series, designed as a compact, high-precision production platform for small-to-medium components requiring fine surface finish and tight dimensional tolerances. Note that Mori Seiki became part of DMG Mori in 2013, and machines bearing the Mori Seiki brand are pre-rebranding production; the 2017 date on this listing likely refers to the year listed for sale rather than the year of manufacture, as the ACCUMILL 4000 was produced in the early 2000s to mid-2000s era. The ACCUMILL 4000 features a 27.6 x 15.7 inch work table and provides X-, Y-, and Z-axis travels of 22.0, 16.9, and 13.8 inches, accommodating small precision components. The BT-30 taper spindle operates at speeds up to 12,000 RPM with approximately 14 HP, enabling high surface-speed cutting in aluminum and precision steel. The Mori Seiki MSG-805 CNC control provides G-code programming and advanced contouring. Overall machine dimensions are approximately 63 x 80.4 x 95.2 inches and machine weight is 6,614 pounds. The ACCUMILL series is particularly recognized in precision component manufacturing for medical devices, optical equipment, and electronics.

Technical Attributes

Y-Axis Travel
16.9 ''
Spindle Power
14 HP
Table Size (LxW)
27.6 x 15.7
Max Spindle Speed
12000 RPM
X-Axis Travel
22 ''
# of Axes
3
Z-Axis Travel
13.8 ''
Control System
Mori Seiki MSG-805

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.

If you identify any inaccuracies, please help us improve our data by reporting them here.