U'CHINE UHM-2012T HORIZONTAL MACHINING CENTER

U'CHINE UHM-2012T U'CHINE UHM-2012T HORIZONTAL MACHINING CENTER equipment image

Equipment Overview

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OEM
U'CHINE
Model
UHM-2012T
Year of Manufacture
-
Category
HORIZONTAL MACHINING CENTERS

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Technical Description

The U'CHINE UHM-2012T Horizontal Machining Center is a high-performance CNC machine designed for precision milling of complex workpieces. Featuring a robust horizontal spindle with a maximum speed of 4,000 RPM and a 24.8 horsepower motor, it delivers reliable power for demanding machining tasks. The machine offers a generous Y-axis travel of 50 inches and a Z-axis travel of 47.244 inches, enabling the processing of large and heavy components with ease. Its ISO 50 taper spindle ensures compatibility with a wide range of cutting tools, supporting versatile applications in various industries. The UHM-2012T is equipped with a 24-tool Automatic Tool Changer (ATC), which streamlines tool changes and reduces non-cutting time, enhancing overall productivity. The pallet measures 31.496 inches in width and 62.992 inches in length, providing ample space for secure workpiece clamping and efficient handling. All operations are managed by a CNC control system, ensuring precise and repeatable machining accuracy. The horizontal spindle design facilitates efficient chip removal, minimizing the risk of chip re-cutting and improving surface finish quality. This machining center is ideal for high-volume production environments where reliability, accuracy, and efficiency are paramount.

Technical Attributes

Table Size (LxW)
62.992 x 55.118
Spindle Taper
ISO 50
Z-Axis Travel
66.93 ''
Max Spindle Speed
4,000.00
Y-Axis Travel
78.74 ''
Control System
HAAS VF-4
X-Axis Travel
165.35 ''
Spindle Power
34.90 HP

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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