CNC vertical lathe for automotive parts
Z-axis travel: 500 mm
Maximum swing diameter: Φ750 mm
Maximum turning diameter: Φ550 mm
Turning height: 500 mm
Spindle speed range: 100–1000 rpm
Spindle motor power: 18.5 kW
CNC vertical lathes for automotive parts are widely used in industries such as automotive, aerospace, and medical device manufacturing.
This CNC vertical lathe for automotive parts features a double-column, dual-turret configuration and is designed for machining medium-to-large disc, ring, and other rotary components. Workpieces are placed directly on the table surface, eliminating the need for long-reach supports or complicated auxiliary lifting during clamping. This makes the machine particularly suitable for heavy, large-diameter parts with relatively short axial dimensions.
For manufacturers producing components such as flanges, valve bodies, wheel hubs, gear blanks, brake discs, and pump housings, the lathe can be used as a standalone turning machine or integrated with processes such as drilling and milling to meet specific production requirements.
The CNC vertical lathe features a double-column frame structure, with a crossbeam connecting the two columns to form a stable machining area. The tool post moves along the crossbeam and slide system, while cutting forces are transmitted through the structural components to the base and columns rather than being concentrated on one side of the machine.
For castings, forgings, and steel rotary parts, roughing operations often require large depths of cut and high feed rates. The double-column structure provides stable support for tool movement during heavy cutting.
The worktable is positioned at the center of the machine, making it easier to keep the workpiece's center of gravity within the machine's main load-bearing area after clamping. For heavier parts, this layout also facilitates loading and unloading with overhead cranes or other lifting equipment.
For disc-shaped parts, the dual-turret design of the CNC vertical lathe for automotive parts provides additional tool capacity and allows different cutting operations to be completed in a single workpiece setup.
How to Choose the Right Configuration for a CNC Vertical Lathe?
Maximum outer diameter and minimum machining dimensions of the workpiece
Workpiece height and actual machining area
Single piece weight
Material and blank condition
Outer diameter, end face, inner hole, and groove to be machined
Single piece machining time and daily output
Workpiece clamping method
Whether drilling or other combined operations are required
| Specification | unit | CK525 | Specification | unit | CK525 |
| X axis | mm | 280 | Turret station | Eight stations + row cutter | |
| Z axis | mm | 500 | X-axis rolling linear guide | 4 pieces, width 45mm | |
| Maximum swing diameter | mm | Φ750 | Z axis rolling linear guide | 4 pieces, width 45mm | |
| turning diameter | mm | Φ550 | cooling motor | W | 450+750 |
| turning height | mm | 500 | Pump output | m³/h | 4m³/h |
| Spindle speed | rpm | 100-1000 | Repeatability | mm | ±0.003 |
| Spindle motor power | Kw | 18.5 | positioning accuracy | mm | ±0.006 |
| Spindle diameter | mm | Φ140 | smallest positioning unit | mm | 0.001 |
| Chuck model | hydraulic chuck | Dimensions (approx.) | mm | 2900*2400*2800mm | |
| diameter | inch | 15″ | Gross weight (approx.) | kg | 7000 |
At the project planning stage, we can conduct a preliminary assessment based on the workpiece drawings, materials, and machining requirements provided by the client. For workpieces where the machining process is not yet fully confirmed, trial cutting or process verification can be carried out to determine whether the proposed equipment configuration meets the required machining conditions.
After the equipment has been manufactured, it undergoes geometric accuracy checks, functional tests, and trial cutting verification. For export projects, we can also provide technical equipment data, installation and foundation documents, and operation and maintenance documentation. On-site installation, commissioning, and operator training can be arranged according to the project requirements.
For equipment that has been in use for an extended period, we provide spare parts, remote technical support, and maintenance assistance. For older machines that still have repair value, we can also help clients evaluate whether repair or replacement is appropriate and recommend the corresponding parts based on the actual condition of the equipment.
Suitable for a Variety of Rotating Parts
Flanges and large flanges
Valve bodies and valve components
Pump bodies and pump components
Automotive parts such as wheel hubs and brake discs
Gear blanks and ring-shaped parts
Rotating components for construction machinery
Wind power and energy equipment components
Other disc-shaped, sleeve-type, and short-shaft workpieces
For specific workpieces, we can further determine the required swing diameter, machining height, tool type, clamping method, and CNC system configuration based on the part drawings.
Why are customers willing to cooperate long-term?
They receive equipment tailored to their processes. Configurations are based on workpiece drawings and processing requirements, not just standard model recommendations.
They receive ongoing support. From installation and commissioning to operation training and subsequent technical issues, corresponding technical assistance is available.
The equipment undergoes practical verification before delivery. Precision testing, operational testing, and trial cutting confirm the equipment's condition before shipment.
After-sales service covers the entire equipment lifecycle. Warranty, spare parts, repair, and technical support are provided to help customers reduce post-maintenance communication costs.
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