What is EDM Machining?
EDM (Electrical Discharge Machining) is an advanced technology for precise and contactless machining of conductive materials. This process allows for the creation of complex shapes, narrow gaps, and fine details that are difficult to achieve with conventional methods. It is primarily used for hard and difficult-to-machine materials such as carbides, titanium, hardened steels, and conductive ceramics.
Our EDM Machining Technologies
We have state-of-the-art equipment for wire electrical discharge cutting (Wire EDM) and sinker EDM machining.
Wire EDM
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High precision – Creating complex contours and fine details with tolerances in the micrometer range.
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Contactless cutting – Minimal mechanical stress on the workpiece, no residual tension or deformation.
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Processing of hard materials – Ideal for extremely hard metals and alloys.
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High efficiency – Suitable for both series and custom production with repeatable quality.
Sinker EDM
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Creating complex 3D structures – Suitable for molds, dies, and shaped spindles.
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Processing of carbides and alloys – Capable of machining extremely hard materials.
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Precision microstructures – Ability to create microstructures and fine details.
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Production of cavities and deep holes – Ideal for intricate geometries and concealed spaces.
Materials Suitable for EDM Machining
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Hardened steels (tool steels, hardened alloys)
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Carbides (WC-Co, hard metals)
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Titanium and its alloys
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Copper and brass (special electrodes and precision components)
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Conductive ceramics (silicon carbide, boron nitride)
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Aluminum and alloys
Where is EDM Machining Used?
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Toolmaking – Production of molds, dies, and specialized tools
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Automotive industry – Precision engine components, injection systems
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Aerospace industry – Specialized high-durability components
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Medical technology – Titanium implants and surgical tools
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Electronics and precision mechanics – Micro-components and sensitive parts
Why Choose Our EDM Machining?
✔ Cutting-edge technology for electrical discharge machining ✔ Experienced team of experts with years of practice ✔ Precision results even for extremely complex geometries ✔ Capability for both prototype and series production ✔ Short delivery times and individual approach