USED DMG MORI NZX 4000
The DMG MORI NZX 4000 is a large-scale, high-productivity multi-tasking turning center designed for machining long shaft-type and heavy medium-to-large components in a single setup. It belongs to the NZX production series, which focuses on rigidity, high-output machining, and process integration, making it ideal for industries such as automotive driveline systems, construction equipment, and energy sector components.
The machine supports workpieces up to approximately 660 mm in diameter and 3,000 mm in length, making it suitable for long shafts and complex rotational parts. It offers extended axis travel with a Z-axis stroke of over 3,100 mm, enabling full-length machining without repositioning, which significantly improves accuracy and reduces handling time.
A key feature of the NZX 4000 is its multi-turret configuration with Y-axis capability, allowing simultaneous machining operations. The first turret is equipped with BMT (Built-in Motor Turret) technology, providing strong live tooling performance comparable to a No. 40 taper machining center spindle. This enables turning, drilling, milling, and grooving operations in a single setup, reducing cycle time dramatically.
The machine is built with a high-rigidity trapezoidal bed structure, designed to resist distortion and torsion during heavy cutting. It also features wide slideways on all axes, improving stability and machining precision during long production cycles.
The NZX 4000 is also designed for high-efficiency production environments, supporting automation systems such as bar feeders, gantry loaders, and robotic integration for 24/7 manufacturing. Advanced control systems like MAPPS and Fanuc-based platforms ensure smooth programming, simulation, and production monitoring.
Overall, the NZX 4000 is a heavy-duty production turning solution built for large, long components, combining rigidity, multi-turret efficiency, and automation readiness for high-output manufacturing environments.
DMG MORI NZX 4000 SPECIFICATIONS
| DMG MORI NZX 4000 – AXIS |
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| X-Axis (Turret – Radial Movement) |
| Z-Axis (Turret – Longitudinal Movement) |
| Y-Axis (Milling capability – Turret 1) |
| C-Axis (Main Spindle Indexing) |
| Optional Sub-Spindle (C2-Axis) |
| DMG MORI NZX 4000 – AXIS TRAVELS |
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| X-Axis Travel: approx. 385 mm |
| Z-Axis Travel: approx. 3,100 mm |
| Y-Axis Travel: approx. 140 mm |
| C-Axis Rotation: 360° continuous |
| Optional C2-Axis: 360° continuous |
| DMG MORI NZX 4000 – CAPACITY |
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| Maximum Turning Diameter: approx. 660 mm |
| Maximum Turning Length: approx. 3,000 mm |
| Through Spindle Capacity: up to ~285 mm (variant dependent) |
| Designed for long and large-diameter workpieces |
| DMG MORI NZX 4000 – SPINDLE |
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| High-power Main Spindle |
| Spindle Power: approx. 30–37 kW (heavy-duty) |
| Beltless gear drive system |
| High torque for large part machining |
| DMG MORI NZX 4000 – TABLE / WORKHOLDING |
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| Large chuck / custom workholding options |
| Support for long shafts & pipes |
| Tailstock / steady rest support |
| Designed for heavy components |
| DMG MORI NZX 4000 – TOOL TURRET |
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| Single Turret with BMT (Built-in Motor Turret) |
| Milling capability comparable to machining centers |
| Live tooling with high torque (~117 Nm) |
| Y-axis machining capability |
| High rigidity turret design |
| DMG MORI NZX 4000 – FEEDRATES |
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| Heavy-duty feed system |
| Optimized for long-part machining |
| Stable cutting over long travels |
| Reduced vibration for large components |
| DMG MORI NZX 4000 – COOLANT & CHIP MANAGEMENT |
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| Flood Coolant System |
| Optional High-pressure coolant |
| Chip conveyor |
| Designed for large chip evacuation |
| DMG MORI NZX 4000 – CONTROL SYSTEM |
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| Control System: MAPPS / FANUC / Mitsubishi |
| CELOS platform integration |
| Advanced machining cycles |
| 3D simulation & collision control |
| DMG MORI NZX 4000 – POWER & AIR REQUIREMENTS |
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| Power Requirement: approx. 70–100+ kVA |
| Air Supply: approx. 5–6 bar |
| Energy-efficient system |
| DMG MORI NZX 4000 – DIMENSIONS |
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| Machine Length: approx. 6,000–9,000+ mm |
| Machine Width: approx. 2,500–3,500 mm |
| Machine Height: approx. 2,500–3,500 mm |
| Machine Weight: approx. 15,000–25,000+ kg |
| DMG MORI NZX 4000 – GENERAL INFORMATION |
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| Machine Type: Heavy-duty CNC Turning Center |
| 4-axis turning machine for long components |
| Equipped with Y-axis and BMT turret |
| Extremely rigid trapezoidal bed design |
| Ideal for process integration (turn + mill) |
| INDUSTRIES THAT USE DMG MORI NZX 4000 |
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| Oil & Gas |
| Energy |
| Heavy Engineering |
| Marine |
| Aerospace (large components) |
| TYPICAL PARTS DMG MORI NZX 4000 CAN PRODUCE |
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| Long Shafts |
| Pipes & Tubular Components |
| Crankshafts |
| Heavy Cylindrical Parts |
| Energy & Marine Components |
| WHY CHOOSE DMG MORI NZX 4000 |
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| Ideal for Long & Heavy Workpieces |
| High Rigidity for Heavy-duty Cutting |
| Large Turning Length (3+ meters) |
| Strong Milling Capability (BMT) |
| Reliable for Large-scale Production |
WHY BUY USED DMG MORI NZX 4000
Buying a used NZX 4000 is a strong strategic investment for manufacturers handling long shafts and heavy production components. Since the machine is designed for continuous industrial use, it retains strong structural value in the secondary market when properly maintained.
One of the biggest advantages is the high productivity-to-cost ratio. The multi-turret system with Y-axis capability allows multiple operations to run simultaneously, significantly reducing cycle times even on large components. This means a used machine can still deliver near-new productivity levels in the right condition.
Cutting time is a critical factor when evaluating a used NZX 4000. These machines are typically used in heavy-duty production environments, so accumulated hours can be significant. Machines with lower cutting time—ideally under 20,000–25,000 hours—offer better long-term reliability. Units under 10,000–15,000 hours are especially valuable because they usually retain higher spindle accuracy and require fewer immediate repairs.
Another advantage is access to large-capacity machining features at a reduced cost, including long-bed machining, BMT live tooling, and multi-turret simultaneous operation. These features are expensive in new machines but become highly cost-effective in the used market.
Additionally, DMG MORI’s global service network ensures good availability of spare parts and technical support. Many used NZX 4000 machines can also be upgraded with modern controls or automation systems, extending their usable life significantly.
Because of its rigid construction, the NZX 4000 is particularly suitable for demanding applications where stability and accuracy are critical over long production runs. Even older machines can perform well if maintenance history is strong.
In summary, a used NZX 4000 offers excellent value by combining large-part machining capability, high productivity, and cost efficiency, making it ideal for heavy production environments.
HOW MUCH DOES A USED DMG MORI NZX 4000 COST?
The cost of a used NZX 4000 depends on multiple factors including manufacturing year, configuration, condition, automation level, and most importantly, total cutting time. Since it is a large production machine, wear condition plays a major role in pricing.
For machines manufactured before 2000, there are no direct NZX 4000 models, but comparable large-capacity production lathes typically range from $80,000 to $180,000. These older machines lack modern multi-turret synchronization, Y-axis functionality, and advanced live tooling systems.
Machines produced between 2000 and 2010 generally fall within the $180,000 to $350,000 range. These machines may offer early multi-turret capability and improved CNC controls but lack the full rigidity and productivity features of modern NZX platforms. Units with lower cutting time—typically under 20,000–25,000 hours—are priced toward the higher end.
For actual NZX 4000 machines manufactured between 2015 and 2025, used prices typically range from $350,000 to $750,000+, depending on turret configuration, automation systems, tooling, and condition. Machines equipped with full production automation (bar feeders, gantry loaders, or robotic systems) command higher prices.
Cutting time plays a decisive role in valuation. Since these machines are heavily used in continuous production environments, spindle wear, turret alignment, and guideway condition become critical. Machines with low cutting time (under 10,000–15,000 hours) are considered premium due to longer remaining life and higher machining accuracy.
Buyers should always evaluate maintenance logs, spindle vibration, turret indexing accuracy, and overall machine condition rather than relying only on age.
Overall, the cost of a used NZX 4000 is determined by age, configuration, and usage history, with cutting time being the most important factor in determining true market value and long-term reliability.
