DMG MORI NZX-S 2500
USED DMG MORI NZX-S 2500
The DMG MORI NZX-S 2500 is a high-precision, compact multi-axis production turning center designed specifically for efficient shaft machining in medium-volume to high-volume production environments. It belongs to the NZX-S series, which focuses on space-saving design, thermal stability, and high productivity for continuous industrial manufacturing.
The machine supports a maximum workpiece diameter of approximately 200 mm and a maximum turning length of around 700 mm, making it ideal for small to medium-sized shaft components and precision cylindrical parts. Its compact footprint allows high productivity per square meter, which is especially useful in automated production lines where space efficiency is important.
A key feature of the NZX-S 2500 is its symmetrical machine structure around the spindle axis, which helps distribute thermal loads evenly and improves dimensional stability during long production runs. This design significantly reduces thermal drift, ensuring consistent accuracy in continuous machining environments. The machine also uses a rigid body structure optimized through FEM analysis, improving vibration damping and machining stability.
Depending on configuration, the NZX-S 2500 can include multi-turret setups and optional live tooling, allowing turning, drilling, and light milling operations in a single setup. This reduces part handling and improves cycle time efficiency. The vertical-style chip evacuation design also helps maintain clean machining conditions and stable cutting performance.
The machine is designed for automation integration, supporting bar feeders and robotic loading systems for unattended or lights-out production. Control systems such as FANUC or MAPPS-based DMG MORI interfaces provide reliable programming, monitoring, and production control.
Overall, the NZX-S 2500 is a compact, high-efficiency shaft machining solution, offering strong thermal stability, automation readiness, and consistent precision for industrial production environments.
DMG MORI NZX-S 2500 SPECIFICATIONS
| DMG MORI NZX-S 2500 – AXIS |
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| X-Axis (Radial Movement) |
| Z-Axis (Longitudinal Movement) |
| Twin Turret Configuration |
| Optional C-Axis (Spindle Indexing) |
| Optional Live Tooling Capability |
| DMG MORI NZX-S 2500 – AXIS TRAVELS |
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| X-Axis Travel: approx. 120 mm |
| Z-Axis Travel: approx. 770 mm |
| DMG MORI NZX-S 2500 – CAPACITY |
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| Maximum Turning Diameter: approx. 200 mm |
| Maximum Turning Length: approx. 700 mm |
| Designed for small-diameter shaft machining |
| Ideal for high-volume production |
| DMG MORI NZX-S 2500 – SPINDLE |
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| High-performance production spindle |
| Optimized for continuous machining |
| Compact spindle design |
| High thermal stability |
| DMG MORI NZX-S 2500 – TABLE / WORKHOLDING |
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| Shaft machining configuration |
| Automation-ready workholding |
| Suitable for bar feeding systems |
| Optional tailstock / automation systems |
| DMG MORI NZX-S 2500 – TOOL TURRET |
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| Twin turret configuration |
| High rigidity turret design |
| Optional live tooling |
| Suitable for simultaneous machining |
| DMG MORI NZX-S 2500 – FEEDRATES |
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| High-speed production feedrates |
| Optimized for cycle time reduction |
| DMG MORI NZX-S 2500 – COOLANT & CHIP MANAGEMENT |
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| Flood coolant system |
| Optional high-pressure coolant |
| Vertical bed for efficient chip evacuation |
| Designed for continuous production |
| DMG MORI NZX-S 2500 – CONTROL SYSTEM |
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| Control System: MAPPS / Fanuc |
| COMPACTline interface |
| Production-focused CNC control |
| DMG MORI NZX-S 2500 – POWER & AIR REQUIREMENTS |
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| Power Requirement: approx. 25–40 kVA |
| Air Supply: approx. 5–6 bar |
| DMG MORI NZX-S 2500 – DIMENSIONS |
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| Compact footprint design |
| Space-saving production layout |
| Built for automation cells |
| DMG MORI NZX-S 2500 – GENERAL INFORMATION |
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| Machine Type: Multi-Axis CNC Turning Center |
| Specialized for shaft machining |
| High precision with thermal stability |
| Designed for mass production environments |
| INDUSTRIES THAT USE DMG MORI NZX-S 2500 |
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| Automotive |
| Precision Engineering |
| Electrical Components |
| Mass Production Manufacturing |
| TYPICAL PARTS DMG MORI NZX-S 2500 CAN PRODUCE |
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| Small shafts |
| Pins |
| Motor components |
| Transmission parts |
| WHY CHOOSE DMG MORI NZX-S 2500 |
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| Ideal for High-Volume Shaft Production |
| Compact and Space-Saving Design |
| Twin Turret for Faster Cycle Times |
| High Precision in Continuous Machining |
WHY BUY USED DMG MORI NZX-S 2500
Buying a used DMG MORI NZX-S 2500 is a practical choice for manufacturers focused on efficient shaft production with limited floor space and controlled investment cost. Since the machine is purpose-built for continuous operation, it maintains good structural integrity even after extended use.
One of the main advantages is the high productivity per investment ratio. Even in used condition, the NZX-S 2500 delivers stable machining performance with consistent accuracy, especially in automated production environments where repeatability is more important than extreme flexibility.
Cutting time is a key factor when evaluating a used machine. These machines are often used in long production runs, so usage varies significantly depending on application. Machines with lower cutting time (under 20,000–25,000 hours) generally offer better long-term reliability. Units under 10,000–15,000 hours are especially valuable because spindle wear, turret backlash, and guideway degradation remain minimal.
Another advantage is high automation compatibility in a compact footprint. The NZX-S 2500 is designed for integration with bar feeders and robotic systems, making it ideal for manufacturers scaling toward unattended production without investing in larger, more expensive multi-turret machines.
Additionally, DMG MORI’s global support structure ensures spare parts availability and service access, even for older machines. Many used NZX-S 2500 units can also be upgraded with modern control systems or automation modules to extend their operational life.
While it is not designed for heavy-duty large-part machining, it excels in precision shaft production, stability, and efficiency per space unit, making it highly effective in compact production cells.
In summary, a used NZX-S 2500 offers strong value through compact design, automation readiness, and stable high-precision performance for small-to-medium shaft manufacturing.
HOW MUCH DOES A USED DMG MORI NZX-S 2500 COST?
The cost of a used DMG MORI NZX-S 2500 depends on manufacturing year, configuration, automation level, condition, and most importantly, total cutting time.
For machines manufactured before 2000, comparable shaft-focused CNC lathes typically range from $25,000 to $60,000, depending on condition and retrofit level. These older machines lack modern automation integration and advanced thermal compensation systems.
Machines produced between 2000 and 2010 generally fall within the $60,000 to $120,000 range. These models offer improved CNC systems, better spindle stability, and more reliable production performance, but still lack modern multi-axis efficiency. Units with lower cutting time (under 20,000–25,000 hours) are priced higher due to better mechanical condition.
For NZX-S 2500 machines from 2010–2025, used prices typically range from $120,000 to $250,000+, depending on turret configuration, tooling setup, and automation systems such as bar feeders or robotic loading units.
Cutting time plays a major role in valuation. Since these machines are often used in continuous production environments, wear can occur in spindle bearings, turret indexing systems, and guideways. Machines with low cutting time (under 10,000–15,000 hours) are considered premium due to higher precision retention and longer remaining service life.
Buyers should always evaluate maintenance records, spindle vibration levels, and axis backlash rather than relying solely on machine age or appearance.
Overall, the cost of a used NZX-S 2500 is determined by configuration, usage history, and automation level, with cutting time being the most important factor in determining true market value and long-term production reliability.
