HO CHUN V65S VERTICAL MACHINING CENTER

HO CHUN V65S HO CHUN V65S VERTICAL MACHINING CENTER equipment image

Equipment Overview

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OEM
HO CHUN
Model
V65S
Year of Manufacture
-
Category
VERTICAL MACHINING CENTERS

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Technical Description

The HO CHUN V65S is a precision CNC vertical machining center engineered for medium-duty metal processing applications. This three-axis machine delivers 650mm (X-axis), 510mm (Y-axis), and 550mm (Z-axis) of travel, providing ample capacity for complex part geometries. The machine features a spacious 900mm × 460mm work table with robust load-bearing capability, ideal for batch production and multi-process operations. The spindle operates at 8,000 RPM with BT40 taper tooling, complemented by a 24-tool automatic tool changer for efficient production runs. Equipped with Meehanite cast iron construction across all three axes with dual slideways, the V65S delivers exceptional rigidity and thermal stability for precision machining. The CNC control system enables synchronized three-axis movement for milling, boring, drilling, reaming, and rigid tapping operations. Rapid traverse rates of 36m/min ensure minimal non-cutting time, while positioning accuracy of ±0.008mm and repeatability of ±0.004mm support tight tolerances. The machine incorporates full guarding, automatic lubrication systems, and integrated coolant delivery for extended tool life and superior surface finishes. Its compact footprint and stable design make it suitable for aerospace, automotive, mold manufacturing, and general precision machining across diverse industrial sectors.

Technical Attributes

X-Axis Travel
25.59 ''
Z-Axis Travel
21.65 ''
Spindle Power
14.75 HP
Max Spindle Speed
10,000.00 RPM
Table Size (LxW)
20.07x31.49
Y-Axis Travel
20.07 ''

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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