NOVICK NOVICUT 650M-II WIRE EDM MACHINE

Equipment Overview
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- NOVICK
- Model
- NOVICUT 650M-II
- Year of Manufacture
- -
- Category
- WIRE EDM MACHINES
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A+Technical Description
The NOVICK NOVICUT 650M-II Wire EDM Machine is a high-precision CNC-controlled electrical discharge machining system designed for intricate cutting of conductive materials. Utilizing a thin, continuously fed wire electrode—typically brass or copper—the machine generates controlled electrical discharges between the wire and the workpiece, eroding material with exceptional accuracy and minimal mechanical force. The workpiece is submerged in deionized water, which acts as a dielectric fluid to cool the cutting zone, flush away debris, and ensure stable spark generation. The CNC control system precisely guides the wire along complex contours using G-code, enabling the production of parts with tight tolerances and fine surface finishes. The machine features a robust wire transport system with diamond guides and automatic wire threading, maintaining consistent wire tension and optimal cutting performance. With travel ranges of 25.6 inches (X-axis), 19.7 inches (Y-axis), and 17.7 inches (Z-axis), the NOVICUT 650M-II accommodates a wide variety of part sizes and geometries. Its advanced CNC technology allows for precise control over the wire path, supporting both 2D and 3D machining operations, including taper cutting and complex internal profiles. The absence of physical contact between the wire and workpiece eliminates mechanical stress, making it ideal for delicate or hardened materials. This machine is engineered for reliable, repeatable production of high-precision components in industries such as mold and die, aerospace, and medical device manufacturing.
Technical Attributes
- X-Axis Travel
- 25.6 ''
- Power Requirement
- 220V Three Phase
- Y-Axis Travel
- 19.7 ''
- Control System
- CNC
- Z-Axis Travel
- 17.70 ''
- Wire Diameter
- 0.0100 ''
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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