The KENT INDUSTRIAL USA, INC. CRL-1640 is a high-precision horizontal CNC lathe engineered for demanding machining applications. Featuring a robust rigid Meehanite cast iron bed with extra ribbing, the machine ensures exceptional stability and vibration absorption for consistent accuracy. The main spindle offers a maximum turning diameter of 9.050", a maximum turning length of 35.000", and a maximum swing of 16.000", accommodating a wide range of workpiece sizes. The spindle supports a maximum bar diameter of 2.060" and operates at speeds up to 3,000 RPM, powered by a 7.5 HP standard motor with an optional 10 HP upgrade for enhanced performance. The lathe is equipped with a 2-axis control system, providing precise movement and repeatability. The X-axis travel is 196", with a maximum feed rate and rapid traverse of 295 ipm, ensuring efficient material removal and quick positioning. The Y-axis and Z-axis each offer 196" of travel, with matching feed rates and rapid traverse speeds of 295 ipm, enabling versatile multi-directional machining. The machine features an automatic 4-position electric turret, induction-hardened and ground ways, and extra-large precision-ground ballscrews for smooth operation and extended tool life. An auto-lube system with metered check valves maintains optimal lubrication, while the tailstock includes a quill with a diameter of 2.283" and travel of 5.5". The CRL-1640 is designed for both manual and CNC operation, making it suitable for a variety of production environments.
KENT INDUSTRIAL USA, INC. CRL-1640 HORIZONTAL MACHINING CENTER Technical Specifications | Aucto
Technical Attributes
Max Spindle Speed
3,000.00
Y-Axis Travel
196.00 ''
Spindle Power
10.00 HP
Z-Axis Travel
196.00 ''
# of Axes
2.00
X-Axis Travel
196.00 ''
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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