MORI SEIKI SL-154 CNC LATHE

MORI SEIKI SL-154 MORI SEIKI SL-154 CNC LATHE equipment image

Equipment Overview

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OEM
MORI SEIKI
Model
SL-154
Year of Manufacture
-
Category
CNC LATHES

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Technical Description

The Mori Seiki SL-154/500 CNC Lathe is a high-performance, two-axis turning center designed for precision machining of a wide range of cylindrical components. Equipped with an 8-inch chuck, the machine provides a maximum swing over bed of 26.8 inches and a machining length of 22.8 inches, allowing for the efficient processing of medium-sized workpieces. The maximum turning diameter is 11.8 inches, and the bar capacity is 1.625 inches, making it suitable for both bar-fed and chucking operations. The lathe is powered by a robust 15 HP motor, enabling high-speed cutting with a maximum spindle speed of 6,000 RPM for improved productivity and surface finish. The machine features a tailstock for added support during long workpiece machining, enhancing accuracy and rigidity. Control is managed through the advanced MSX805-III CNC system, which offers intuitive programming, reliable operation, and seamless integration with modern manufacturing workflows. The two-axis configuration ensures precise movement and positioning, while the compact design optimizes floor space utilization. This lathe is ideal for shops requiring consistent, high-quality turning operations with the flexibility to handle various materials and part geometries. Its combination of power, speed, and control makes it a versatile solution for demanding production environments.

Technical Attributes

Distance Between Centers
20.40 ''
Spindle Bore Diameter
1.63 ''
Max Spindle Speed
6000 RPM
Max Swing
26.80 ''
X-Axis Travel
9.00 ''
Z-Axis Travel
22.60 ''
Control System
FANUC MAPPS

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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