JOHNFORD VHMC-630 HORIZONTAL MACHINING CENTER

JOHNFORD VHMC-630 JOHNFORD VHMC-630 HORIZONTAL MACHINING CENTER equipment image

Equipment Overview

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OEM
JOHNFORD
Model
VHMC-630
Year of Manufacture
-
Category
HORIZONTAL MACHINING CENTERS

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Technical Description

The Johnford VHMC-630 is a robust CNC horizontal machining center featuring 3 axes with travel distances of 39.4" on the X-axis, 31.5" on the Y-axis, and 37.4" on the Z-axis, providing substantial machining envelope flexibility. It is powered by a 20.1 hp motor and operates at spindle speeds up to 6,000 RPM, delivering capable cutting performance for a wide range of materials. The machine utilizes a BT-50/CAT-50 taper spindle system, compatible with a 60-tool automatic tool changer (ATC), enhancing productivity by enabling extended unmanned operation. The workpiece pallet measures 24.8" by 24.8", supporting medium-sized components. The CNC control system is FANUC-based, ensuring reliable precision, programmability, and ease of operation. The horizontal spindle orientation allows efficient chip evacuation and improved thermal stability during machining. Optional features can include high-pressure coolant through the spindle and linear scales for added accuracy. This machining center is suitable for complex and heavy-duty milling tasks in industries requiring high precision and productivity. Its combination of a strong motor, ample tool capacity, and substantial axis travel makes it ideal for diverse manufacturing applications requiring a balance of rigidity, speed, and automation.

Technical Attributes

Y-Axis Travel
26.00 ''
X-Axis Travel
30.00 ''
Z-Axis Travel
26.00 ''
# of Axes
3.00
Max Spindle Speed
15,000.00
Spindle Power
14.80 HP
Control System
FANUC
Table Size (LxW)
24.8 x 19.7

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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