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What Is Wire EDM for Titanium? - Complete Guide

Complete guide to wire electrical discharge machining (EDM) of titanium alloys. Process capabilities, tolerances, surface finishes, lead times, cost ranges, and applications for precision titanium components.

nontraditional卤0.002 mm (standard), 卤0.001 mm (precision)

Quick Answer

What is wire EDM for titanium?
Wire electrical discharge machining (EDM) uses a thin electrically charged wire to erode titanium through controlled spark discharges. It is ideal for producing precise contours, sharp internal corners, and burr-free features in hardened titanium components without applying cutting forces.

Capability

Wire EDM provides exceptional precision for titanium components with complex geometries. Key capabilities include:

  • Burr-free cutting 鈥?no mechanical cutting forces, no burrs
  • Sharp internal corners 鈥?radii down to 0.03 mm (wire radius)
  • Taper cutting 鈥?up to 30掳 taper angles
  • Through-hole and slot cutting 鈥?no pre-drilled start hole required (using EDM drilling)
  • Stack cutting 鈥?multiple thin parts cut from stacked plate
  • Minimum feature size 鈥?0.2 mm slot width
  • Maximum thickness 鈥?up to 500 mm

Tolerance

Standard Precision
卤0.002 mm 卤0.001 mm
ISO 2768-f ISO 2768-m
Positional: 卤0.005 mm Positional: 卤0.002 mm

Tolerances are verified through first-article inspection and CMM reporting. Thermal compensation applied for long cuts.

Surface Finish

Standard Precision
0.4 碌m Ra 0.1 碌m Ra
16 碌in Ra 4 碌in Ra

Multi-pass cutting (rough 鈫?trim 鈫?finish) achieves progressively finer finishes. Final skim pass at reduced power produces mirror-like surfaces.

Lead Time

Phase Duration
Prototype (1鈥?0 pcs) 3鈥? business days
Low-volume (10鈥?00 pcs) 1鈥? weeks
Production (100鈥?000+ pcs) 3鈥? weeks
Express service Available on request

Cost Range

Complexity Typical Range (per part)
Simple 2D profile $50鈥?200
Moderate (tapers, tight tol.) $200鈥?800
Complex (fine features, thick) $800鈥?3,000+
NRE (programming + setup) $200鈥?1,000

Cost factors: part thickness, total cut length, number of pierce points, surface finish requirement, and material grade. Wire EDM is generally slower but more precise than conventional machining for equivalent features.

  • Grade 5 (Ti-6Al-4V) 鈥?Aerospace components, medical instruments
  • Grade 23 (Ti-6Al-4V ELI) 鈥?Implant blanks, surgical tooling
  • Grade 9 (Ti-3Al-2.5V) 鈥?Thin-walled tubes, precision profiles
  • Grade 2 (CP Ti) 鈥?Chemical processing components, gaskets

Applications

  • Precision implant blanks for orthopaedic and dental applications
  • Aerospace structural components requiring burr-free edges
  • Semiconductor wafer handling end-effectors and grippers
  • Medical cutting guides and surgical templates
  • Thin-walled titanium components prone to distortion from conventional cutting
  • Prototype and low-volume production of complex 2D profiles
  • Slotted features, keyways, and precision holes in hardened titanium