FRANK PHOENIX CW-10 WIRE EDM MACHINE

Equipment Overview
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- FRANK PHOENIX
- Model
- CW-10
- Year of Manufacture
- -
- Category
- WIRE EDM MACHINES
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A+Technical Description
The FRANK PHOENIX CW-10 Wire EDM Machine is a precision CNC-controlled electrical discharge machine designed for high-accuracy metal cutting and machining operations. This compact submerged-type wire EDM system features a controlled work envelope with 11.81 inches of X-axis travel, 7.87 inches of Y-axis travel, and 5.91 inches of Z-axis travel, making it suitable for small to medium-sized precision components. The machine measures 23.62 inches wide, 34.25 inches high, and 72.83 inches deep, enabling installation in space-constrained production environments. Equipped with servo motors and an advanced CNC control system, the CW-10 delivers stable precision machining with typical accuracy tolerances of ±3.5 micrometers and surface quality down to 0.6 Ra microns. The machine incorporates a built-in wire vertical alignment system and automatic water conductivity control, ensuring consistent cut quality and reduced operator intervention. Standard electrode wire specifications typically include brass wire diameters of 0.20, 0.25, or 0.30 millimeters, providing versatility for various machining applications. The submerged machining configuration provides superior surface finish and wire stability during cutting operations. This machine is commonly utilized in aerospace, automotive, and precision tool manufacturing industries for producing dies, punches, molds, and complex metal components from conductive materials including hardened steel and specialty alloys.
Technical Attributes
- Y-Axis Travel
- 7.9 ''
- Control System
- CNC
- X-Axis Travel
- 11.8 ''
- Z-Axis Travel
- 5.91 ''
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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