DMG MORI USA, INC. NZX 6000 HORIZONTAL MACHINING CENTER

Equipment Overview
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- DMG MORI USA, INC.
- Model
- NZX 6000
- Year of Manufacture
- -
- Category
- HORIZONTAL MACHINING CENTERS
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A+Technical Description
The DMG MORI NZX 6000 is a high-performance, large-scale horizontal machining center designed for the efficient and precise machining of long and large-diameter workpieces. Featuring a robust trapezoidal bed and the widest guideways in its class, the NZX 6000 delivers exceptional rigidity and stability, enabling heavy-duty cutting operations with outstanding accuracy. The machine is equipped with a powerful main spindle capable of a maximum turning diameter of 35.4 inches and a maximum turning length of 78.7 inches, supporting a wide range of demanding applications. The spindle achieves speeds up to 1,000 RPM and delivers 73.8 HP, ensuring high output and productivity. The NZX 6000 incorporates DMG MORI’s proprietary Built-in Motor Turret (BMT) technology, which places the motor directly inside the turret to minimize heat generation and vibration, resulting in improved transmission efficiency, cutting power, and accuracy. The machine supports up to two simultaneous cutting tools and operates across seven axes, providing advanced multi-axis capabilities for complex part geometries. Additional features include a high-precision absolute magnetic linear scale for direct feedback, a high-resolution control system, and a user-friendly interface with multiple USB ports. The NZX 6000 is ideal for industries requiring the machining of large, heavy-duty components, such as oil and energy, where reliability, precision, and productivity are paramount.
Technical Attributes
- # of Axes
- 7.00
- Spindle Power
- 73.80 HP
- Max Spindle Speed
- 1,000.00
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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