Yes, it’s perfect for cutting complex internal shapes with tight tolerances.
Experience unmatched precision with our modern wire cutting solutions. Using ultra-fine, durable wire electrodes, we shape complex metal parts with exact detail. This method produces smooth edges, minimizes material loss, and delivers reliable performance, making it ideal for specialized tooling, intricate molds, and components requiring strict dimensional accuracy.
Wire cutting is a precision process that uses an ultra-thin, electrically charged wire to slice through conductive materials with remarkable accuracy. It’s well-suited for producing intricate designs and maintaining strict tolerances, making it valuable in mold production, aerospace components, and other high-precision manufacturing applications.
Merkmal | Standard Tolerance (mm) | High Precision (mm) | Ultra-Precision (mm) |
---|---|---|---|
Dimensional Accuracy | ±0.010 | ±0.005 | ±0.002 |
Cutting Width (Kerf) | ±0.020 | ±0.010 | ±0.005 |
Straightness | 0.005/100mm | 0.002/100mm | 0.001/100mm |
Roundness | ±0.010 | ±0.005 | ±0.002 |
Concentricity | ±0.010 | ±0.005 | ±0.002 |
Oberflächengüte (Ra) | 1.6 µm | 0.8 µm | 0.2 µm |
Mindestgröße des Merkmals | 0.25 mm | 0.15 mm | 0.05 mm |
We specialize in precision machining of detailed shapes and fine features in tough metals through advanced wire cutting. By using a charged wire, we maintain exact tolerances and flawless finishes without applying physical force, making it ideal for dies, tooling, and delicate parts needing distortion-free accuracy.
Ingenieure und führende Hersteller vertrauen auf Yicen Precision, wenn es um schnelle Iterationen und langlebige, leistungsstarke Teile geht. Ob für Prototypen oder für die Großserienproduktion, unsere umfangreiche Materialauswahl gewährleistet Präzision, Festigkeit und Zuverlässigkeit für jedes CNC-Bearbeitungsprojekt.
D2
A2
H13
304
316
17-4 PH
440C
S7
M2
6061
7075
Klasse 2
Güteklasse 5 (Ti-6Al-4V)
WC
C110 (Copper)
C932 (Bronze)
C360
C260
Inconel 625
Inconel 718
EDM-grade graphite
Yicen Precision bietet eine Vielzahl von Endbearbeitungsoptionen, die auf Ihre Projektanforderungen zugeschnitten sind.
The default finish directly from the wire cutting process, featuring visible tool paths and minor surface roughness.
A matte, uniform finish is achieved by blasting the surface with fine media such as glass beads. This treatment is perfect for reducing glare and improving visual consistency.
A durable, oven-cured finish applied in a range of colors and textures.
Have a unique requirement? Submit an RFQ and our team will collaborate with you to develop a customized finishing solution.
Mechanical polishing delivers a smooth, mirror-like surface, ideal for parts that require both refined aesthetics and low friction.
An electrochemical treatment that smooths metal surfaces, reduces roughness, and enhances corrosion resistance, ideal for stainless steel components.
Removes sharp edges and residual burrs from the wire cutting process to improve handling safety and surface quality, especially for precision parts.
Removes surface contaminants and free iron from stainless steel.
Wir sind darauf spezialisiert, Ihre Ideen mit beispielloser Schnelligkeit und Präzision in hochwertige, funktionale Komponenten umzusetzen. Mit fortschrittlicher Technologie und fachmännischem Können stellen wir Teile her, die selbst die komplexesten Spezifikationen erfüllen.
The wire cutting process transforms digital designs into flawless metal parts by using a fine, electrically charged wire to achieve intricate shapes, sharp edges and dimensional accuracy without physical contact.
Here’s a step-by-step breakdown:
Every wire cutting project starts with a precise CAD design of the required component. This design is converted into a CNC-compatible program that defines the cutting path. Accuracy in this stage is critical because even a fraction of a millimeter can affect the final fit and function of the part.
The selected workpiece is securely clamped onto the machine’s work table. The wire 0.1–0.3 mm in diameter is threaded through the starting hole or edge. Exact positioning ensures the cut begins at the right spot and follows the programmed path without deviation.
The wire passes through the workpiece, removing material using controlled electrical discharges rather than physical force. This method prevents distortion, even on thin or delicate parts. The process can achieve sharp corners, intricate curves, and detailed profiles that traditional cutting tools cannot match.
To maintain accuracy, the wire is continuously fed and kept under consistent tension during the cut. At the same time, a dielectric fluid flushes away debris and cools the cutting area. This keeps the process stable, prevents overheating, and ensures the surface finish remains smooth and free of burrs.
Once the cutting is complete, the part is carefully removed and cleaned. Skilled technicians perform a detailed dimensional inspection, often measuring tolerances as tight as ±0.002 mm. If needed, secondary passes or micro-finishing are applied to achieve the exact specifications and surface quality.
Wire cutting offers incredible precision, but like any advanced manufacturing process, it comes with its own set of challenges. At Yicen Precision, we’ve spent years perfecting our methods to overcome these issues, ensuring every component meets the highest standards.
Here’s a closer look at the common challenges and how we solve them.
Herausforderung: Fine wires, especially those just 0.1–0.25 mm thick, can snap when cutting hard or thick metals. This not only interrupts production but also risks damaging the part.
Our Solution: We use optimized machine settings for tension, voltage, and feed rate, combined with premium wire materials. This has reduced breakage rates by over 30%, saving both time and material.
Herausforderung: Excessive heat during the cutting process can alter the microstructure of certain alloys, potentially weakening the part or affecting its precision fit.
Our Solution: Our machines use short, controlled electrical pulses and advanced cooling systems to keep heat generation to a minimum. This maintains the original material properties and eliminates the risk of heat distortion.
Herausforderung: During cutting, tiny metal particles (swarf) can accumulate in the gap between the wire and the workpiece, reducing accuracy and slowing down the process.
Our Solution: We employ multi-directional high-pressure flushing to clear debris continuously. It ensures a clean cutting path and maintains tolerance consistency throughout the job.
Herausforderung: When tolerances are as tight as ±0.002 mm, even small factors like material hardness variations or temperature changes can cause deviations.
Our Solution: Our CNC systems include adaptive control features that automatically adjust feed and discharge settings in real time. This allows us to hold tolerances with exceptional repeatability, even on complex shapes.
Herausforderung: Intricate profiles or deep internal cuts can take longer, increasing production costs and delivery time.
Our Solution: We use multi-pass cutting techniques, a roughing pass for speed followed by fine passes for accuracy and finish. This approach improves surface quality while reducing overall machining time by up to 20%.
Die CNC-Schnellbearbeitung von Prototypen eignet sich perfekt für die Herstellung von technischen oder Produktionsprototypen, die dem Endprodukt in Aussehen und Funktionalität sehr ähnlich sind. Bei Yicen bieten wir Ihnen sofortige Angebote und eine schnelle Lieferung, damit Sie präzise und qualitativ hochwertige CNC-gefertigte Prototypen für Ihren Bedarf erhalten.
Die CNC-Bearbeitung von Kleinserien dient oft als Brücke zwischen Prototyping und Massenproduktion für neue und aufkommende Produktionen. Mit Yicen wird dieser Prozess einfacher, effizienter und kostengünstiger, so dass Sie die Produktion schnell skalieren und gleichzeitig hohe Qualitätsstandards einhalten können.
Die CNC-Produktionsbearbeitung ist die beste Lösung für die effiziente Herstellung von tausend oder mehr Teilen. Yicen nutzt eine vielfältige Auswahl an Werkstoffen sowie Automatisierungs- und Mehrachsenkapazitäten, um Großserien mit engen Toleranzen, überragender Maßgenauigkeit, hoher Zuverlässigkeit und kurzen Durchlaufzeiten zu fertigen.
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Can wire EDM cut internal features?
Yes, it’s perfect for cutting complex internal shapes with tight tolerances.
Is there any contact with the material?
No, it’s a non-contact process that uses electrical sparks for cutting.
Does wire cutting cause heat damage?
No, it’s a cold cutting process that avoids thermal distortion.
How precise is wire EDM cutting?
It can achieve tolerances as tight as ±0.002mm.
Can I use wire cutting for small quantity projects?
Yes, it’s ideal for prototypes and small production runs.