DMG MORI NHX4000 HORIZONTAL MACHINING CENTER

DMG MORI NHX4000 DMG MORI NHX4000 HORIZONTAL MACHINING CENTER equipment image

Equipment Overview

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OEM
DMG MORI
Model
NHX4000
Year of Manufacture
-
Category
HORIZONTAL MACHINING CENTERS

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Technical Description

The DMG MORI NHX4000 Horizontal Machining Center is a high-performance CNC machine designed for precision and efficiency in demanding production environments. Featuring a robust horizontal table/pallet system, it supports a 15.75-inch pallet size with two pallets for continuous operation and rapid workpiece changeover. The machine delivers precise indexing with a 1-degree table/pallet rotation, enabling complex multi-sided machining. Its generous travel ranges—22.00 inches in X, 22.00 inches in Y, and 26.00 inches in Z—accommodate a wide variety of part sizes and geometries. The NHX4000 achieves rapid traverse speeds of up to 2352 inches per minute, minimizing non-cutting time and maximizing productivity. The spindle is equipped with an HSK63 taper, ensuring secure tool holding and high rigidity for accurate, high-speed machining. With a maximum spindle speed of 12,000 RPM, the machine is well-suited for both high-speed and heavy-duty cutting applications. The tool magazine offers a capacity of 40 tools, supporting extended unmanned operation and reducing setup times. The combination of advanced spindle technology, large work envelope, and automated pallet system makes the NHX4000 ideal for complex, high-precision machining tasks in industries such as aerospace, automotive, and mold and die.

Technical Attributes

Control System
MITSUBISHI CELOS
Spindle Taper
HSK63
Max Spindle Speed
12,000.00
Z-Axis Travel
26.00 ''
Y-Axis Travel
22.00 ''
Table Size (LxW)
15.75 x 15.75
X-Axis Travel
22.00 ''

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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