CNC Turning Machine

CNC Turning Machine for Precision Turning & Production Machining

 

CNC Turning Machines provide computer-controlled machining for cylindrical, conical, threaded, grooved, and other rotational features. The range covers flat-bed, slant-bed, vertical, and turn-mill configurations, allowing manufacturers to select turning equipment according to workpiece geometry, size, machining process, production volume, and required accuracy.

 

 
  • CNC Lathe with Automatic Tool Changer (ATC)
    CNC Lathe with Automatic Tool Changer (ATC) is designed for precision turning with automatic tool selection and tool changes. It supports multiple machining operations in one setup, reducing...
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  • Heavy-Duty Turn-Mill Machine
    A Heavy-Duty Turn-Mill Machine is a CNC machine tool that combines turning and milling functions in one machining platform, enabling multiple cutting operations on large workpieces within a single...
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  • Precision Micro-Turning Machine
    The Precision Micro-Turning Machine serves electronics component manufacturers, medical device suppliers, micro-motor producers, and precision hardware manufacturers machining 1–20 mm shafts,...
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  • High-Speed CNC Lathe
    The High-Speed CNC Lathe is a production CNC turning machine for machining companies, component manufacturers, and industrial equipment suppliers.
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  • CNC Gear Hobbing Machines
    CNC gear hobbing machines are industrial gear-cutting equipment for manufacturers, distributors, and machining companies. They produce cylindrical gears, helical gears, splines, and shaft-type...
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  • CNC Face Grinding Machine
    The CNC Face Grinding Machine provides precision single- and double-face grinding with a rigid machine structure and controlled cooling system, maintaining consistent flatness and parallelism...
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  • Sub-Spindle CNC Lathe
    The Sub-Spindle CNC Lathe is a CNC turning machine for half-shafts, pump shafts, spline shafts, and other parts requiring two-end machining.
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  • Dual-Spindle Turning Center
    The Dual-Spindle Turning Center transfers the workpiece automatically from the main spindle to the sub-spindle for front- and rear-side machining in one cycle. Its high-rigidity structure and...
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  • CNC Mill-Turn Lathe
    A CNC Mill-Turn Lathe combines turning and milling operations in one machine, allowing rotational workpieces to be completed with multiple machining processes without transferring them between...
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  • Multi-tasking Machine Tool
    The Multi-tasking Machine Tool integrates turning, milling, drilling, and spline machining in one platform, completing multiple processes in a single setup to reduce workpiece transfers, minimize...
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  • Heavy-duty CNC Inclined Rail Lathe
    The Heavy-Duty CNC Inclined Rail Lathe is a CNC turning machine featuring an integral cast iron slant bed and heavy-duty guide rails, providing high structural rigidity, vibration resistance, and...
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  • CNC Inclined Bed Lathe
    CNC Inclined Bed Lathe combines a 30° integrated slant bed, high-rigidity structure, precision linear guides, ball screws, and servo turret for accurate machining, efficient chip removal, and...
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Machine Configurations

 

Configuration

Primary Focus

Typical Requirement

Flat Bed CNC Lathe

Stable Turning

Large or conventional turned parts

Slant Bed CNC Lathe

Rigidity & Productivity

General production and heavy-duty turning

Vertical CNC Lathe

Large-Diameter Turning

Discs, sleeves, flanges, and large rotational parts

Turn Mill Center

Turning + Milling

Complex parts requiring multiple machining operations

Spindle Configuration

Multi-Side Machining

Second-operation or multi-side production

Tooling Configuration

Machining Flexibility

Multiple turning and auxiliary operations

Automation Configuration

Production Efficiency

Repetitive or continuous production

CNC Turning Machine Range

1.Turn Mill Center

CNC Lathe With Automatic Tool Changer (ATC)

Heavy-Duty Turn-Mill Machine

Precision Micro-Turning Machine

High-Speed CNC Lathe

Sub-Spindle CNC Lathe

Dual-Spindle Turning Center

CNC Mill-Turn Lathe

Multi-tasking Machine Tool

Turn Mill Center With Y Axis

High Precision CNC Lathe

High-Precision Turning-Milling Machine

High-Rigidity Turning-Milling Machine

02/

Slant Bed Lathe

  • Heavy-duty CNC Inclined Rail Lathe
  • CNC Inclined Bed Lathe
03/

Flat Bed CNC Lathe

  • Flat Bed Lathe Machine
04/

Vertical CNC Lathe

  • CNC Vertical Turning Lathe Machine
  • Small Vertical Lathe
05/

Specialized Machining Equipment

  • CNC Gear Hobbing Machines
  • CNC Face Grinding Machine

 

Turning Process

 

External Turning
External turning machines the outside diameter of shafts, pins, sleeves, and other rotational components to achieve required dimensions and surface conditions.


Internal Turning & Boring
Internal turning and boring produce controlled internal diameters and cylindrical surfaces where bore dimensions, depth, and concentricity are important.


Grooving & Threading
Grooving and threading create specified grooves and internal or external threads according to component geometry, thread size, pitch, and tolerance requirements.


Facing & Combined Turning
Facing, step turning, taper turning, and related operations can be combined within the same CNC process to reduce secondary machining and improve production consistency.

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CNC Turning Equipment Selection

 

Machine Type Comparison

 

Machine Type

Primary Focus

Best Suited For

Flat Bed CNC Lathe

Stable Turning

Large or conventional turned parts

Slant Bed CNC Lathe

Rigidity & Productivity

General production and heavy-duty turning

Vertical CNC Lathe

Large-Diameter Turning

Discs, sleeves, flanges, and large rotational parts

Turn Mill Center

Turning + Milling

Complex parts requiring multiple machining operations

Specialized Equipment

Process-Specific Machining

Gear hobbing and precision face grinding

 

Key Selection Factors

 
 
01
 

Define the Workpiece

Start with workpiece diameter, length, weight, geometry, material, and required machining features. These factors determine the machine structure, working envelope, spindle capacity, and workholding configuration.

 
02
 

Match the Turning Process

Define the required operations, including external turning, internal turning, boring, facing, grooving, threading, milling, or multi-side machining. The process determines whether a conventional CNC lathe or a more advanced turn-mill configuration is required.

 
03
 

Match Production & Performance Requirements

Production volume, target cycle time, cutting load, dimensional tolerance, and automation requirements determine the required spindle performance, machine rigidity, tooling, accuracy, and production configuration.

CNC Lathe With Automatic Tool Changer (ATC)

 

 
 
Machine Configuration & Automation

Machine Structure

Flat-bed, slant-bed, and vertical configurations can be selected according to workpiece size, geometry, loading method, rigidity requirements, and machining orientation.

Spindle & Tooling

Single-spindle, sub-spindle, dual-spindle, turret, automatic tool changer, and live tooling configurations can be matched to the required machining operations and production process.

Multi-Axis & Multi-Task Machining

Y-axis and multi-axis configurations support off-center milling, drilling, tapping, and other additional operations, while turn-mill configurations can reduce secondary setups for complex parts.

Automation & Material Handling

Bar feeders, automatic loading and unloading, robotic handling, chip conveyors, coolant systems, and production-line integration can be configured for repetitive or continuous production.

 

Manufacturing Capabilities & Quality Assurance

 

15+ Years of Machine Tool Expertise
Specializing in CNC gear hobbing machines,CNC lathes, machining centers, and automated production lines to meet different workpiece and machining requirements.

 

20,000 m² In-House Manufacturing
Equipped with CNC gantry miling machines,guideway grinding machines, CNC boring machines, and other production equipment to maintain direct control over key manufacturing and assembly processes.

 

ISO 9001 & High-Tech Enterprise
Operating under an ISO 9001 quality management system and supported by 12 utility model patents as a National High-Tech Enterprise and Technology-Based Enterprise.

 

Application-Proven Performance
Equipment is used for automotive power train components, transmission gears, drive shafts, motor shafts, spline shafts, and other precision-machined components.

 

productcate-599-533

productcate-599-321

 

Turnkey Engineering & After-Sales Support

 

Process & Production-Line Support
Engineering assistance covering equipment selection, process planning, tooling and cutting-tool configuration, and automated production-line layout.


Rapid 24-Hour Service Response
Technical support from installation through operation. When an issue cannot be resolved remotely, an on-site arrival time is provided within 24 hours.

 

FAQ

 

 

Q: What is a CNC Turning Machine?

A: A CNC Turning Machine is a computer-controlled machine tool designed primarily for machining rotational components through operations such as turning, facing, boring, grooving, and threading.

Q: What types of CNC turning machines are available?

A: The main configurations include flat-bed CNC lathes, slant-bed CNC lathes, vertical CNC lathes, and Turn Mill Centers, with specialized equipment available for specific machining processes.

Q: How do I choose between a flat-bed and slant-bed CNC lathe?

A: The selection depends on workpiece size, cutting load, production requirements, rigidity, chip evacuation, and the required machining configuration.

Q: When should I choose a vertical CNC lathe?

A: A vertical CNC lathe is generally suitable for large-diameter, disc-shaped, sleeve, flange, and other workpieces that benefit from vertical workholding.

Q: When is a Turn Mill Center required?

A: A Turn Mill Center is suitable when the component requires turning combined with milling, drilling, tapping, or other non-rotational machining operations.

Q: Can CNC turning machines perform threading and grooving?

A: Yes. CNC turning machines can be configured for external and internal threading, grooving, facing, boring, and other turning operations according to the workpiece requirements.

Q: Can CNC lathes be automated?

A: Yes. Depending on the production requirements, CNC turning machines can be equipped with bar feeders, automatic loading and unloading, robotic handling, chip conveyors, and production-line integration.

Q: What parts can be machined on a CNC turning machine?

A: Typical applications include shafts, pins, sleeves, flanges, hubs, hydraulic components, automotive parts, powertrain components, and other rotational mechanical components.

Q: What information is needed for machine selection?

A: Provide the workpiece drawing or 3D model, material, diameter, length, weight, required turning operations, tolerances, production quantity, target cycle time, and automation requirements.

Q: Can the machine configuration be customized?

A: Yes. Machine structure, spindle configuration, tooling, workholding, automation, and production-line integration can be evaluated according to the workpiece and production process.

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