SAMSUNG SL 2000ASY CNC LATHE

SAMSUNG SL 2000ASY SAMSUNG SL 2000ASY CNC LATHE equipment image

Equipment Overview

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OEM
SAMSUNG
Model
SL 2000ASY
Year of Manufacture
-
Category
CNC LATHES

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Technical Description

This high-performance CNC lathe features a 6" chuck size and 2" bar capacity, designed for precision turning operations. It delivers 18.6 kW of power and achieves a maximum spindle speed of 6,000 RPM, supporting efficient material removal and fine surface finishes. The turning diameter reaches 15.5" with a swing of 25.59", accommodating a wide range of workpieces. The machining length is 20", providing ample travel for complex parts. Equipped with the advanced FANUC Oi-TF control system, the machine offers robust axis management, simultaneous control of up to four axes, and comprehensive programming capabilities including canned cycles, custom macros, and programmable data input. The X-axis travel is 8.4" and the Z-axis travel is 22", enabling versatile part processing. Rapid traverse rates are 944 IPM on the X-axis and 1,181 IPM on the Z-axis, ensuring fast cycle times and high productivity. The machine dimensions are 110" x 60" x 76", with a weight of 10,000 lbs, reflecting its sturdy construction and vibration resistance for consistent accuracy. The FANUC Oi-TF control supports features such as automatic acceleration/deceleration, feedrate override, spindle orientation, rigid tapping, and constant surface speed control, enhancing both ease of use and machining precision. This lathe is ideal for demanding production environments requiring reliability, speed, and accuracy in turning applications.

Technical Attributes

Max Spindle Speed
6000 RPM
Max Swing
25.59 ''
Spindle Bore Diameter
2.00 ''
Z-Axis Travel
22 ''
X-Axis Travel
8.40 ''

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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