OKUMA LB-3000EX C-1000 CNC LATHE

OKUMA LB-3000EX C-1000 OKUMA LB-3000EX C-1000 CNC LATHE equipment image

Equipment Overview

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OEM
OKUMA
Model
LB-3000EX C-1000
Year of Manufacture
-
Category
CNC LATHES

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Technical Description

This CNC lathe features a 10-inch chuck and a 3.125-inch bar capacity, designed for 2-axis precision machining with a powerful 30 hp spindle motor capable of reaching a maximum speed of 4,200 RPM. It supports a turning diameter of 16.14 inches and a swing of 22.83 inches, with a maximum machining length of 40.16 inches. The machine's X and Z axes provide travel distances of 10.24 inches and 41.93 inches respectively, with rapid traverse rates of 984 IPM for the X axis and 1,181 IPM for the Z axis, enabling efficient tool positioning and material cutting. Equipped with a tailstock and a 12-station turret, it allows for versatile tooling options and enhanced stability during turning operations. The spindle features a JIS A2-8 nose, ensuring compatibility with a range of tooling standards. Control is managed via the Okuma OSP-P200LA CNC system, which offers a user-friendly interface on a 10.4-inch LCD screen, supporting advanced programming and low-heat, energy-efficient operation. Overall machine dimensions are 135" in length, 80" in width, and 77" in height, with a weight of 13,200 pounds, denoting a robust and stable construction suited for high-precision and heavy-duty manufacturing processes. This combination of power, precision travel, and advanced control makes the lathe ideal for complex and accurate turning tasks in industrial applications.

Technical Attributes

X-Axis Travel
10.24 ''
Z-Axis Travel
41.93 ''
Max Spindle Speed
4200 RPM
Control System
OKUMA OSP-P200LA
Max Swing
22.83 ''
Spindle Bore Diameter
3.13 ''

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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