2017 DMG MORI SEIKI NMV5000DCG VERTICAL MACHINING CENTER

Equipment Overview
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- DMG MORI SEIKI
- Model
- NMV5000DCG
- Year of Manufacture
- 2017
- Category
- VERTICAL MACHINING CENTERS
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A+Technical Description
The 2017 DMG MORI SEIKI NMV5000DCG is a 5-axis vertical machining center designed for high-precision milling and contouring operations. The machine features a work table measuring ΓΈ19.69 (rotary) inches, providing ample fixturing area for a wide range of workpiece sizes. Axis travels measure 28.74 inches in X, 20.08 inches in Y, and 20.08 inches in Z, enabling a versatile machining envelope suitable for a broad range of component sizes. The spindle delivers 24.1 HP of continuous power at speeds up to 12,000 RPM, supporting cutting strategies from heavy roughing through fine finishing. Machine motion is governed by the CELOS / MAPPS X / Fanuc 30i CNC control system, providing operators with advanced programming capabilities and intuitive operation. Full 5-axis simultaneous capability allows the NMV5000DCG to machine complex contoured surfaces and undercuts in a single setup, reducing part handling and improving geometric accuracy. The machine weighs approximately 33,069 lbs, reflecting the robust cast iron construction that contributes to vibration damping and long-term dimensional stability. The NMV5000DCG incorporates DCG (Driven at the Center of Gravity) on all linear axes and Direct Drive Motors on A and C rotary axes, eliminating backlash and delivering consistent 5-axis accuracy on aerospace and mold components.
Technical Attributes
- Spindle Power
- 24.1 HP
- Z-Axis Travel
- 20.08 ''
- Y-Axis Travel
- 20.08 ''
- Max Spindle Speed
- 12000 RPM
- # of Axes
- 5
- Control System
- CELOS / MAPPS X / Fanuc 30i
- X-Axis Travel
- 28.74 ''
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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