2017 HYUNDAI WIA F410D VERTICAL MACHINING CENTER

HYUNDAI WIA F410D 2017 HYUNDAI WIA F410D VERTICAL MACHINING CENTER equipment image

Equipment Overview

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OEM
HYUNDAI WIA
Model
F410D
Year of Manufacture
2017
Category
VERTICAL MACHINING CENTERS

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Technical Description

The 2017 Hyundai WIA F410D is a 3-axis twin-pallet vertical machining center designed for high-productivity small and medium part manufacturing. The machine incorporates a moving-column dual-pallet system with each pallet measuring 25.6" × 16.1", enabling continuous spindle operation while the operator loads and unloads completed parts on the alternate pallet. Axis travels measure 22.4" in X, 16.1" in Y, and 22.8" in Z, with a maximum per-pallet load of 551 lbs. The BT40 spindle reaches 10,000 RPM as standard — with 12,000 RPM available as an option — driven by a 20 HP continuous motor. A 24-tool ATC supports multi-operation capability within each pallet cycle. The Fanuc i Series Smart Plus CNC control, with optional Fanuc 32i-B or Siemens 828D, provides rigid tapping, high-speed contouring, and a comprehensive programming environment. Rapid traverse of 36 m/min on X/Y and 30 m/min on Z contributes to fast part-to-part cycle times. Box guideway construction ensures rigidity and repeatable accuracy across high-volume production runs. Overall machine dimensions are 86.6" × 124.4" × 118.7" reflecting the twin-pallet swing clearance requirement, with a machine weight of 14,110 lbs. The F410D is ideally suited for cellular manufacturing and unmanned production environments where minimizing non-cut time is a primary efficiency driver.

Technical Attributes

Max Spindle Speed
10000 RPM
Y-Axis Travel
16.1 ''
Table Size (LxW)
25.6 x 16.1
# of Axes
3
X-Axis Travel
22.4 ''
Z-Axis Travel
22.8 ''
Spindle Power
20 HP
Control System
Fanuc i Series

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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