Item functions as originally intended, shows signs of normal wear.
Technical Description
The Kent Industrial USA CNL-1740 is a precision CNC lathe engineered for high-accuracy horizontal turning operations. This 2-axis machine features a robust 10 HP AC servo spindle motor with a maximum speed of 2,500 RPM, delivering dependable performance across diverse machining applications. The machine accommodates workpieces up to 17 inches in swing diameter with a maximum turning diameter of 10.870 inches and turning length of 37 inches, making it suitable for mid-range production work. The spindle utilizes a Camlock D1-6 nose for secure tooling retention. The CNL-1740 incorporates rigid Meehanite castings with reinforced ribbing and induction-hardened, precision-ground ways to minimize vibration and ensure consistent accuracy. Its 2-speed gearbox with hardened and ground alloy steel gears enables flexible spindle speed control from 30 to 2,500 RPM. The machine provides X-axis travel of 9.050 inches and optional Z-axis travel ranging from 33.500 to 55.100 inches, with rapid traverse rates of 394 inches per minute across all axes and maximum feed rates of 295 ipm. An automatic 4-position electric turret streamlines tool changes for efficient production cycles. The machine features an integrated auto-lube system with metered check valves and precision ground ballscrews for enhanced operational reliability. Controlled via Fagor 8055i CNC technology, the CNL-1740 combines manual and CNC capabilities, including electronic handwheels for flexible operation modes and a standard tailstock for extended workpiece support.
Technical Attributes
Max Spindle Speed
2,500.00
X-Axis Travel
9.05 ''
Spindle Power
10.00 HP
# of Axes
2.00
Z-Axis Travel
33.50 ''
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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