What are the advantages of a 13-meter CNC vertical lathe?

Applications of 13-meter CNC Vertical Lathe

The 13-meter CNC vertical lathe is mainly used for machining large workpieces with a diameter of up to 13 meters,

 and its specific applications include:

• Wind Power Sector: Machining super-large components such as hubs, flanges, and main shafts for wind power

 equipment, ensuring component precision to support the operation of wind turbines.

• Heavy Machinery: Suitable for turning, milling, and other machining of large shafts, casings, and other parts in heavy

 machinery to meet the needs of mining equipment, construction machinery, etc.

• Shipbuilding: Machining key components such as large ship propellers and hull flanges to ensure the reliability of 

ship power systems and structural parts.

• Energy Equipment: Can be used for machining large pressure vessels, pipeline connectors, etc., in thermal power 

and nuclear power equipment, adapting to the machining needs of heavy parts in the energy industry.

• Other Fields: In large steel structures, metallurgical equipment, and other fields, it is used for machining super-large

 rotating parts or complex structural components, serving as a core equipment in the heavy manufacturing industry.

What are the technical advantages of a 13-meter CNC vertical lathe?

• Large processing range: It can meet the processing needs of large workpieces with a diameter of 13 meters, such as

 turning and milling, and is suitable for processing super-large parts in the wind power, heavy machinery and other fields.

• High-precision control: Multi-axis linkage is realized through the numerical control system, with high positioning accuracy 

and repeat positioning accuracy, which can ensure the processing dimensions and geometric tolerances of large workpieces.

• High degree of automation: It can realize program preset processing, reduce manual operation, improve production 

efficiency, and reduce labor intensity.

• Strong process adaptability: It can complete various processes such as internal and external circles, end faces, conical

 surfaces, and threads, meeting the processing requirements of workpieces with complex structures.

• Good stability: The machine tool has a compact structure and strong rigidity. Combined with high-precision 

guides and transmission systems, it remains stable when processing large-load workpieces.

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