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NCT SL-TURN-52 CNC Lathe

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  • Heavy-duty CNC lathe for industrial turning applications
  • Box type guideways for stable machining performance
  • High-speed spindle capability up to 4500 rpm
  • 51 mm bar capacity for industrial materials
  • Hydraulic turret tooling system for efficient production
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Precision CNC Turning for Industrial Manufacturing

Heavy-Duty Slant-Bed CNC Lathe

The NCT SL-TURN-52 is a heavy-duty slant-bed CNC lathe designed for precise industrial turning operations requiring stable machining capability and reliable production performance.

Box Guideway Machine Construction

The machine integrates rigid box guideways engineered to improve machining stability, reduce vibration, and support reliable heavy-duty turning operations.

High-Speed Spindle Performance

The belt-driven spindle system supports spindle speeds up to 4500 rpm, ensuring efficient machining performance and reliable precision turning capability.

51 mm Bar Capacity Capability

With a spindle bore diameter designed for bar capacities up to 51 mm, the SL-TURN-52 supports efficient machining of industrial materials and components.

Hydraulic Turret Tooling System

The hydraulic turret tooling configuration improves machining efficiency while supporting stable industrial production workflows and reliable tool changing operations.

Stable Industrial Machining Performance

Designed for industrial manufacturing environments, the SL-TURN-52 combines rigid machine construction, stable turning capability, and reliable long-term industrial operation.

Precision Slant-Bed Machine Design

The slant-bed machine structure improves chip evacuation, machining accessibility, and overall production efficiency during industrial turning applications.

Technical Specifications

Working Area

Max. swing diameter over bed

700 mm

Max. swing diameter over cross slide

450 mm

Max. turning length

1250 mm

Distance between centers

1250 mm

Recommended chuck diameter

8"

Axis

Type of Guideway

Box type guide way

X stroke/travel

305 mm

Z stroke/travel

1250 mm

X / Z rapid travel speed

24 / 24 m/min

Spindle

Max. RPM

4500 rpm

Spindle nose

A2-6

Spindle bore diameter

66 mm

Bar capacity

51 mm

Driven by

Belt

Number of ranges

1 (opc.2)

Spindle Motor

Spindle motor power

25 / 35 kW

Spindle motor torque

167 / 236 Nm

Cooling

Air

Tailstock

Quill diameter / stroke

90 / 120 mm

Quill / tailstock operation

Gépi

Tailstock stroke / operation

600

Size of internal taper

MT5

Tooling

Tool change

Turret

Tooling

Bolt-on / VDI40

Operation

Hydraulic

Number of driven tools (option)

12 pc

Maximum speed of tool

5000 rpm

Maximum power of tool driving motor

5.5 kW

Installation

Required floor space x height

4315 (+1100) x 1846 x 2016 mm

Netto machine weight

7200 kg

Electrical connection

3 x 400 VAC VA

Next-generation NCT CNC controllers

Next-generation NCT CNC controllers deliver precise and efficient control for CNC machining applications. Designed for flexibility, NCT controllers support conversational programming, CAM software integration, and traditional G-code programming. Advanced features also help monitor machine performance and optimize operation, ensuring consistently high precision, reliability, and productivity.

myNCT – Conversational programming for CNC machines

myNCT is a user-friendly conversational CNC programming software designed to simplify and speed up machining workflows. Its intuitive interface makes programming accessible for both beginners and experienced operators, allowing users to achieve professional results with minimal training.

Key features of myNCT CNC programming software:

-3+2-axis milling for fast and precise machining of complex geometries

-Free-form contour pocket machining with high flexibility for intricate shapes

-Simple milling cycles for quick programming of common machining operations

-Thread milling for accurate thread production across various materials

-Automated drilling cycles to improve efficiency and productivity

-Driven-tool milling capabilities for combined milling and turning operations

-Turning cycles for precise grooving, threading, and turning applications

3D Solid Model Graphics – Accuracy and efficiency in CNC controllers

3D solid model graphics in CNC controllers provide an advanced solution for real-time visualization and verification of machining processes. This technology helps operators:

-Detect CNC programming errors before machining

-Prevent potential collisions and machine damage

-Monitor the workpiece and machining progress with high accuracy

-Improve productivity, reduce material waste, and maintain consistently high manufacturing quality

Machine Construction and Key Features

           -Rigid cast iron bed, column, and slides for maximum stability

           -Semi or fully enclosed splash guard for improved operator safety

           -Precision linear guideways with ball or roller type bearings on all axes

           -Central oil-lubricated slide system with telescopic metal guideway covers

           -Belt-driven spindle designed for reliable high-speed machining

           -40 spindle taper compatible with DIN or BT tooling systems

           -Digital oil cooler for headstock thermal stabilization

           -Compressed air spindle protection and automatic taper cleaning

           -High-precision ground double nut ball screws

           -Pretensioned ball screws supported on both ends for rigidity

          - Three colour status lamp

            -Drum type tool magazine with arm type ATC system

            -Fast and reliable automatic tool changing process

            -Designed for efficient production workflows

            -Stable tool handling during high-speed machining operations

            -NCT 304 Smart Touch CNC with intuitive touchscreen interface

            -EnDat 2.2 absolute measuring system for precise positioning

            -0.00005 mm positioning resolution with nano interpolation

            -Advanced CNC control optimized for industrial machining applications

             -Smooth and accurate axis movement under demanding workloads

            -Optimized mechanical structure for long-term positioning accuracy

            -Spindle bearing protection by compressed air

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