KENT USA CML-2160 CNC LATHE

KENT USA CML-2160 KENT USA CML-2160 CNC LATHE equipment image

Equipment Overview

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OEM
KENT USA
Model
CML-2160
Year of Manufacture
-
Category
CNC LATHES

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Technical Description

This 2-axis CNC lathe is engineered for precision turning operations, featuring a robust 10 hp spindle motor capable of reaching a maximum speed of 2,000 RPM, ensuring efficient material removal and high productivity. Designed with a 21-inch swing over bed, it accommodates medium to large workpieces, while the 60-inch machining length supports extended turning tasks. The machine is equipped with a tailstock for enhanced workpiece support and rigidity during machining, improving accuracy and surface finish. Control is managed via a FANUC 0iMate-TD CNC system, providing reliable programming, user-friendly operation, and compatibility with industry-standard G-code. The X and Z axes are driven by precision ball screws and servo motors, delivering accurate positioning, repeatability, and smooth motion control. The lathe’s rigid bed construction ensures stability and minimizes vibration, contributing to consistent part quality. Its CNC control allows for automated operation, including programmable spindle speeds and feeds, enabling optimized machining cycles for a variety of materials and geometries. The machine is suitable for high-volume production and complex turning applications, offering flexibility for both simple and moderately intricate components. With its combination of power, precision, and advanced control, this 2-axis CNC lathe is ideal for demanding manufacturing environments requiring reliable performance and tight tolerances.

Technical Attributes

Max Spindle Speed
2000 RPM
Max Swing
21.00 ''

Data Accuracy and Verification

Specifications and technical details are compiled from manufacturer documentation, historical records, and third-party industry sources. While care is taken to ensure accuracy, this information is provided for reference purposes only and may contain errors or omissions. Users should independently verify all details before relying on them.

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