HNK HFB-200 HORIZONTAL MACHINING CENTER

HNK HFB-200 HNK HFB-200 HORIZONTAL MACHINING CENTER equipment image

Equipment Overview

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OEM
HNK
Model
HFB-200
Year of Manufacture
-
Category
HORIZONTAL MACHINING CENTERS

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Technical Description

The HNK HFB-200 Horizontal Machining Center is a high-capacity, 4-axis CNC machine optimized for heavy-duty machining of large workpieces. It features a robust horizontal spindle with a 50 taper and a maximum speed of 1,200 RPM, driven by a powerful 100 HP motor rated for 30-minute operation. The table measures 118.110 inches square, with a maximum workpiece weight capacity of 88,000 lbs, providing a stable and ample work area for heavy components. The machine’s travel capabilities include an X-axis travel of 236.220 inches (with an optional extension up to 590.550 inches), Y-axis travel of 98.430 inches (optionally extended to 177.170 inches), and Z-axis travel of 39.370 inches (up to 47.240 inches optionally), enabling it to accommodate large and complex parts. Tool changing is automated via an automatic tool changer (ATC), enhancing efficiency and reducing downtime in machining operations. The absence of a U axis indicates a focus on 4 primary axes control. This machine is engineered for precision and durability, suitable for industries requiring heavy machining capabilities such as aerospace, energy, and large equipment manufacturing. Its combination of a large worktable, heavy load capacity, and powerful spindle makes the HNK HFB-200 ideal for machining large, heavy components with high accuracy and reliability.

Technical Attributes

Table Size (LxW)
118.11 x 118.11
Max Spindle Speed
1,200.00
Z-Axis Travel
39.00 ''
Y-Axis Travel
98.00 ''
X-Axis Travel
236.00 ''
Spindle Power
100.00 HP
Spindle Taper
50

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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