DAINICHI MX75X400 CNC LATHE

DAINICHI MX75X400 DAINICHI MX75X400 CNC LATHE equipment image

Equipment Overview

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OEM
DAINICHI
Model
MX75X400
Year of Manufacture
-
Category
CNC LATHES

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Technical Description

This CNC lathe features an 18-inch chuck size, accommodating large-diameter workpieces with precision and stability. Powered by a robust 20.1 hp motor, it delivers ample torque for demanding turning operations, supporting a maximum spindle speed of 1,400 RPM for efficient material removal and fine surface finishes. The machine offers a maximum turning diameter of 18.1 inches and a swing of 18.1 inches, enabling the machining of sizable cylindrical components without interference. With a machining length of 157.5 inches, it is well-suited for long shafts and extended parts, while the inclusion of a tailstock provides additional support for lengthy or slender workpieces, enhancing accuracy and rigidity during operation. The lathe is equipped with CNC control via the Fanuc 18T-C-CAPII system, ensuring high repeatability, advanced programming capabilities, and seamless integration into automated manufacturing environments. This control system supports complex tool paths and precise axis movements, making the machine ideal for intricate and high-tolerance components. Weighing 17,637 lbs, the lathe boasts a heavy-duty construction that minimizes vibration and maintains stability during high-speed and heavy-cutting applications. Designed for versatility and reliability, this CNC lathe is suitable for a wide range of industries, including aerospace, automotive, and general manufacturing, where precision, power, and extended machining capacity are essential.

Technical Attributes

Max Swing
18.00 ''
Max Spindle Speed
1400 RPM
Control System
FANUC 10T

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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