Maximum rigidity
The 1,400 mm wide machine bed with full floor support forms a massive base for low-vibration heavy machining.
Exceptional power, speed, and machining capacity: The COMEV Urano EVO was designed for large and heavy precision components, where conventional large lathes reach their limits.
The Urano EVO is designed for heavy machining of workpieces with exceptional dimensions and weights. Despite its size, the machine remains easily accessible due to the open working area and user-friendly design.
Five guideways, a monolithic machine bed and powerful axis drives provide the necessary stability for forged parts, large shafts, rolls, pipes, and demanding custom components.
The dialog-controlled COMEV-CNC enables both economical single-part production and repeatable machining in small and medium series.
The machine combines maximum mechanical stability with simple CNC programming and direct access to the workpiece.
The 1,400 mm wide machine bed with full floor support forms a massive base for low-vibration heavy machining.
Up to 100 kW spindle power, high axis thrust forces and a three-speed gearbox enable powerful machining across the entire speed range.
The COMEV-CNC and high-resolution electronic handwheels facilitate programming, setup and manual machine movements.
The spindle head, machine bed, axes, and carriage were specifically designed for high cutting forces, large tool overhangs and heavy workpieces.
The hardened and precision-ground spindle shaft runs in high-precision bearings and is lubricated by a separate oil pump with flow monitoring.
The hydraulically shifted gearbox allows for a smooth constant power range and high torque even at low speeds.
Ground, backlash-free pre-tensioned ball screw spindles and directly coupled high-torque motors ensure high dynamics.
3,000 daN thrust force in the X-axis and 4,000 daN in the Z-axis support heavy cuts on demanding materials.
The naturally aged, hardened, and ground cast bed offers exceptionally high geometric stability.
The guide arrangement allows for the complete slide path and independent positioning of additional tailstocks.
The fully enclosed casing is designed for good visibility, safe operation, and easy loading and unloading of large workpieces.
Faceplates and spindle mounts up to ASA 28 inches allow for the secure handling of large-format components.
The hand-scraped tailstock features a 300 mm strong quill and can be positioned motorically along the machine bed.
The control developed in collaboration with Delectron combines dialog-driven CNC machining with the familiar operation of a conventional lathe.
Seven peak heights cover swing diameters of 1,015 to 2,030 mm. All sizes are available with peak widths up to 12,000 mm.
| Technical Data | 550 | 650 | 700 | 800 | 900 | 1000 | 1100 |
|---|---|---|---|---|---|---|---|
| Height over bed | 550 mm | 650 mm | 700 mm | 800 mm | 900 mm | 1.000 mm | 1.100 mm |
| Available center distance | 2.000 to 12.000 mm | ||||||
| Swing diameter over bed | 1.015 mm | 1.200 mm | 1.290 mm | 1.475 mm | 1.660 mm | 1.845 mm | 2.030 mm |
| Swing diameter over cross slide | 850 mm | 1.000 mm | 1.095 mm | 1.270 mm | 1.455 mm | 1.645 mm | 1.835 mm |
| Maximum X-axis travel | 750 mm | ||||||
| Bed width | 1.400 mm | ||||||
| Machine bed ground contact | 1.700 mm | ||||||
| Spindle bore | 230 / 310 / 405 mm | ||||||
| Spindle mount | ASA 15" / 20" / 28" | ||||||
| Spindle drive | Automatic hydraulic three-speed gearbox | ||||||
| Maximum spindle speed | 500 RPM | ||||||
| Spindle power S1 | 57 kW | ||||||
| Maximum spindle power S6 | 100 kW | ||||||
| Continuous thrust X-axis | 3,000 daN | ||||||
| Continuous thrust Z-axis | 4,000 daN | ||||||
| Rapid traverse X/Z | 12 m/min | ||||||
| Diameter of tailstock spindle | 300 mm | ||||||
| Machine weight | approx. 25,000 to 70,000 kg | ||||||
| Machine width | 3,050 mm | ||||||
| Machine height | 3,650 mm | ||||||
| Machine length at 2,000 mm center distance | approx. 7,100 mm | ||||||
| Machine length at 3,000 mm center distance | approx. 8,100 mm | ||||||
| Machine length at 4,000 mm center distance | approx. 9,100 mm | ||||||
| Machine length at 5,000 mm center distance | approx. 10,100 mm | ||||||
| Machine length at 6,000 mm center distance | approx. 11,100 mm | ||||||
| Machine length at 7,000 mm center distance | approx. 12,100 mm | ||||||
| Machine length at 8,000 mm center distance | approx. 13,100 mm | ||||||
| Machine length at 9,000 mm center distance | approx. 14,100 mm | ||||||
| Machine length at 10,000 mm center distance | approx. 15,100 mm | ||||||
| Machine length at 11,000 mm center distance | approx. 16,100 mm | ||||||
| Machine length at 12,000 mm center distance | approx. 17,100 mm | ||||||
Technical specifications according to COMEV manufacturer data sheet. Weight, spindle design, machine dimensions, and equipment depend on model and configuration. Subject to changes and errors.
The Urano EVO provides the mechanical and spatial requirements for particularly large, long, and heavy precision components.
The Urano EVO already offers a comprehensive basic equipment for safe and productive machining.
The machine can be adapted to the respective manufacturing task with different clamping devices, tool turrets, steady rests, and measuring systems.
The Urano EVO is designed for companies that need to machine large precision components flexibly, powerfully, and reproducibly.
Machining large rotors, generator shafts, turbine components, and flanges.
Manufacturing of solid shafts, couplings, rollers, bearing points, and special components.
Precision machining of large rolls and cylinders for steel, paper, and plastic plants.
Large spindle bores enable the machining of pipes, hollow shafts, and connecting elements.
Machining of long propeller shafts, drive parts and large-format ship components.
Heavy machining of forged parts as well as repair and finishing of large individual components.
We accompany the project from workpiece analysis through machine configuration, transport, and installation to geometric alignment, commissioning, and long-term technical support.
✓ Workpiece and machining analysis
✓ Selection of center height and center distance
✓ Design of spindle bore and faceplate
✓ Selection of turrets, tools, and steady rests
✓ Foundation and installation planning
✓ Transport and installation planning
✓ Geometric alignment and commissioning
✓ Maintenance, repair, and spare parts service
Please provide us with workpiece diameter, length, weight, material, spindle bore, and desired machining requirements. We will develop the appropriate machine, clamping, and tool configuration.
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