DENFORD CYCLONE HORIZONTAL MACHINING CENTER

Equipment Overview
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- DENFORD
- Model
- CYCLONE
- Year of Manufacture
- -
- Category
- HORIZONTAL MACHINING CENTERS
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A+Technical Description
The Denford Cyclone Horizontal Machining Center is a precision CNC lathe engineered for high-accuracy turning operations in demanding industrial environments. It features a single main spindle with a maximum turning diameter of 6.250 inches and a maximum turning length of 8.250 inches, accommodating workpieces up to 12.000 inches in swing diameter. The spindle is capable of speeds up to 5,000 RPM and delivers 3.0 HP for robust material removal and fine finishing. The machine is equipped with a 4.000-inch chuck and supports a maximum bar diameter of 1.000 inch, making it suitable for a variety of shafts, fittings, and custom components. The tooling system consists of an 8-station turret, allowing for efficient tool changes and versatile machining capabilities, with one tool able to cut at a time. The Cyclone operates on two axes, with X-axis travel of 3.750 inches and Z-axis travel of 8.500 inches, providing precise control over complex geometries. Its compact footprint and rigid cast iron construction ensure stability and accuracy during extended production runs. Designed for ease of use, the machine integrates advanced control systems and automated features, supporting high-speed machining and repeatable results. Ideal for aerospace, automotive, and general manufacturing applications, the Denford Cyclone delivers reliable performance, durability, and precision for both small and large-scale production needs.
Technical Attributes
- X-Axis Travel
- 3.75 ''
- Max Spindle Speed
- 5,000.00
- # of Axes
- 2.00
- Spindle Power
- 3.00 HP
- Z-Axis Travel
- 8.50 ''
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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