KAO MING KMC-633G VERTICAL MACHINING CENTER

KAO MING KMC-633G KAO MING KMC-633G VERTICAL MACHINING CENTER equipment image

Equipment Overview

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OEM
KAO MING
Model
KMC-633G
Year of Manufacture
-
Category
VERTICAL MACHINING CENTERS

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Technical Description

This high-performance CNC machining center features a robust vertical spindle configuration with an ISO50 taper, designed for heavy-duty machining applications. The machine offers a generous work envelope with travel distances of 570.87 inches (X-axis), 98.42 inches (Y-axis), and 47.24 inches (Z-axis), enabling the processing of large and complex workpieces. It is powered by a 120.67 hp spindle motor, delivering substantial torque and cutting force for efficient material removal across a wide range of metals and alloys. The spindle operates at speeds up to 6000 RPM, ensuring high productivity and precision in both roughing and finishing operations. Equipped with a 30-tool automatic tool changer (ATC), the machine supports rapid and seamless tool changes, minimizing downtime and maximizing throughput. The CNC control system provides advanced programming capabilities, adaptive feed control, and integration with modern CAM software, allowing for precise execution of complex machining strategies. The machine’s rigid construction, high-precision linear guides, and servo-driven axes ensure long-term accuracy, stability, and repeatability. Ideal for industries such as aerospace, automotive, and mold making, this CNC machining center combines scalability, reliability, and versatility for demanding production environments.

Technical Attributes

Spindle Power
120.67 HP
Max Spindle Speed
6,000.00 RPM
Z-Axis Travel
47.24 ''
Table Size (LxW)
570.87x98.42
X-Axis Travel
570.87 ''
Y-Axis Travel
98.42 ''

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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